1,042 results on '"Torres, Diana"'
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2. Megaoesophagus associated to inflammatory infiltrate in the autonomous plexus in a 7-year-old Spanish Water Dog
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Ruiz-Campillo, María T., Herrera-Torres, Guillem, Molina-Hernández, Verónica, Bautista, María J., Barrero-Torres, Diana M., López-Rasero, Jesús, and Pérez, José
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- 2024
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3. Successful management of pulmonary edema secondary to accidental electrocution in a young dog
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Díaz, Eduardo A., Sáenz, Carolina, Torres, Diana, Silva, Andrés, and Segnini, Gilberto
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- 2024
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4. Seascape connectivity: ontogenetic migration for Haemulon flavolineatum
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Rodriguez-Torres, Diana Carolina and Acosta, Alberto
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- 2024
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5. I-surfaces from surfaces with one exceptional unimodal point
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Rollenske, Sönke and Torres, Diana
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Mathematics - Algebraic Geometry ,14J10, 14J29, 14E05 - Abstract
We complement recent work of Gallardo, Pearlstein, Schaffler, and Zhang, showing that the stable surfaces with $K_X^2 =1$ and $\chi(\mathcal O_X) = 3$ they construct are indeed the only ones arising from imposing an exceptional unimodal double point. In addition, we explicitly describe the birational type of the surfaces constructed from singularities of type $E_{12}$, $E_{13}$, and $E_{14}$., Comment: 27 pages, v2: improved presentation and minor corrections; to appear in Math. Nachrichten
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- 2023
6. Incorporating progesterone receptor expression into the PREDICT breast prognostic model
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Grootes, Isabelle, Keeman, Renske, Blows, Fiona M, Milne, Roger L, Giles, Graham G, Swerdlow, Anthony J, Fasching, Peter A, Abubakar, Mustapha, Andrulis, Irene L, Anton-Culver, Hoda, Beckmann, Matthias W, Blomqvist, Carl, Bojesen, Stig E, Bolla, Manjeet K, Bonanni, Bernardo, Briceno, Ignacio, Burwinkel, Barbara, Camp, Nicola J, Castelao, Jose E, Choi, Ji-Yeob, Clarke, Christine L, Couch, Fergus J, Cox, Angela, Cross, Simon S, Czene, Kamila, Devilee, Peter, Dörk, Thilo, Dunning, Alison M, Dwek, Miriam, Easton, Douglas F, Eccles, Diana M, Eriksson, Mikael, Ernst, Kristina, Evans, D Gareth, Figueroa, Jonine D, Fink, Visnja, Floris, Giuseppe, Fox, Stephen, Gabrielson, Marike, Gago-Dominguez, Manuela, García-Sáenz, José A, González-Neira, Anna, Haeberle, Lothar, Haiman, Christopher A, Hall, Per, Hamann, Ute, Harkness, Elaine F, Hartman, Mikael, Hein, Alexander, Hooning, Maartje J, Hou, Ming-Feng, Howell, Sacha J, Investigators, ABCTB, Investigators, kConFab, Ito, Hidemi, Jakubowska, Anna, Janni, Wolfgang, John, Esther M, Jung, Audrey, Kang, Daehee, Kristensen, Vessela N, Kwong, Ava, Lambrechts, Diether, Li, Jingmei, Lubiński, Jan, Manoochehri, Mehdi, Margolin, Sara, Matsuo, Keitaro, Taib, Nur Aishah Mohd, Mulligan, Anna Marie, Nevanlinna, Heli, Newman, William G, Offit, Kenneth, Osorio, Ana, Park, Sue K, Park-Simon, Tjoung-Won, Patel, Alpa V, Presneau, Nadege, Pylkäs, Katri, Rack, Brigitte, Radice, Paolo, Rennert, Gad, Romero, Atocha, Saloustros, Emmanouil, Sawyer, Elinor J, Schneeweiss, Andreas, Schochter, Fabienne, Schoemaker, Minouk J, Shen, Chen-Yang, Shibli, Rana, Sinn, Peter, Tapper, William J, Tawfiq, Essa, Teo, Soo Hwang, Teras, Lauren R, Torres, Diana, Vachon, Celine M, van Deurzen, Carolien HM, Wendt, Camilla, and Williams, Justin A
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Cancer ,Breast Cancer ,Breast Neoplasms ,Female ,Humans ,Progesterone ,Prognosis ,Receptor ,ErbB-2 ,Receptors ,Progesterone ,PREDICT Breast ,breast cancer ,Progesterone receptor ,ABCTB Investigators ,kConFab Investigators ,Receptor ,erbB-2 ,Oncology and Carcinogenesis ,Public Health and Health Services ,Oncology & Carcinogenesis - Abstract
BackgroundPredict Breast (www.predict.nhs.uk) is an online prognostication and treatment benefit tool for early invasive breast cancer. The aim of this study was to incorporate the prognostic effect of progesterone receptor (PR) status into a new version of PREDICT and to compare its performance to the current version (2.2).MethodThe prognostic effect of PR status was based on the analysis of data from 45,088 European patients with breast cancer from 49 studies in the Breast Cancer Association Consortium. Cox proportional hazard models were used to estimate the hazard ratio for PR status. Data from a New Zealand study of 11,365 patients with early invasive breast cancer were used for external validation. Model calibration and discrimination were used to test the model performance.ResultsHaving a PR-positive tumour was associated with a 23% and 28% lower risk of dying from breast cancer for women with oestrogen receptor (ER)-negative and ER-positive breast cancer, respectively. The area under the ROC curve increased with the addition of PR status from 0.807 to 0.809 for patients with ER-negative tumours (p = 0.023) and from 0.898 to 0.902 for patients with ER-positive tumours (p = 2.3 × 10-6) in the New Zealand cohort. Model calibration was modest with 940 observed deaths compared to 1151 predicted.ConclusionThe inclusion of the prognostic effect of PR status to PREDICT Breast has led to an improvement of model performance and more accurate absolute treatment benefit predictions for individual patients. Further studies should determine whether the baseline hazard function requires recalibration.
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- 2022
7. Cancer Risks Associated With BRCA1 and BRCA2 Pathogenic Variants
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Li, Shuai, Silvestri, Valentina, Leslie, Goska, Rebbeck, Timothy R, Neuhausen, Susan L, Hopper, John L, Nielsen, Henriette Roed, Lee, Andrew, Yang, Xin, McGuffog, Lesley, Parsons, Michael T, Andrulis, Irene L, Arnold, Norbert, Belotti, Muriel, Borg, Åke, Buecher, Bruno, Buys, Saundra S, Caputo, Sandrine M, Chung, Wendy K, Colas, Chrystelle, Colonna, Sarah V, Cook, Jackie, Daly, Mary B, de la Hoya, Miguel, de Pauw, Antoine, Delhomelle, Hélène, Eason, Jacqueline, Engel, Christoph, Evans, D Gareth, Faust, Ulrike, Fehm, Tanja N, Fostira, Florentia, Fountzilas, George, Frone, Megan, Garcia-Barberan, Vanesa, Garre, Pilar, Gauthier-Villars, Marion, Gehrig, Andrea, Glendon, Gord, Goldgar, David E, Golmard, Lisa, Greene, Mark H, Hahnen, Eric, Hamann, Ute, Hanson, Helen, Hassan, Tiara, Hentschel, Julia, Horvath, Judit, Izatt, Louise, Janavicius, Ramunas, Jiao, Yue, John, Esther M, Karlan, Beth Y, Kim, Sung-Won, Konstantopoulou, Irene, Kwong, Ava, Laugé, Anthony, Lee, Jong Won, Lesueur, Fabienne, Mebirouk, Noura, Meindl, Alfons, Mouret-Fourme, Emmanuelle, Musgrave, Hannah, Yie, Joanne Ngeow Yuen, Niederacher, Dieter, Park, Sue K, Pedersen, Inge Sokilde, Ramser, Juliane, Ramus, Susan J, Rantala, Johanna, Rashid, Muhammad U, Reichl, Florian, Ritter, Julia, Rump, Andreas, Santamariña, Marta, Saule, Claire, Schmidt, Gunnar, Schmutzler, Rita K, Senter, Leigha, Shariff, Saba, Singer, Christian F, Southey, Melissa C, Stoppa-Lyonnet, Dominique, Sutter, Christian, Tan, Yen, Teo, Soo Hwang, Terry, Mary Beth, Thomassen, Mads, Tischkowitz, Marc, Toland, Amanda E, Torres, Diana, Vega, Ana, Wagner, Sebastian A, Wang-Gohrke, Shan, Wappenschmidt, Barbara, Weber, Bernhard HF, Yannoukakos, Drakoulis, Spurdle, Amanda B, Easton, Douglas F, and Chenevix-Trench, Georgia
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Biomedical and Clinical Sciences ,Oncology and Carcinogenesis ,Prevention ,Breast Cancer ,Pancreatic Cancer ,Rare Diseases ,Ovarian Cancer ,Women's Health ,Digestive Diseases ,Cancer ,Urologic Diseases ,Prostate Cancer ,2.1 Biological and endogenous factors ,BRCA1 Protein ,BRCA2 Protein ,Breast Neoplasms ,Breast Neoplasms ,Male ,Female ,Genetic Predisposition to Disease ,Heterozygote ,Humans ,Infant ,Newborn ,Male ,Mutation ,Ovarian Neoplasms ,Pancreatic Neoplasms ,Risk ,Clinical Sciences ,Oncology & Carcinogenesis ,Oncology and carcinogenesis - Abstract
PurposeTo provide precise age-specific risk estimates of cancers other than female breast and ovarian cancers associated with pathogenic variants (PVs) in BRCA1 and BRCA2 for effective cancer risk management.MethodsWe used data from 3,184 BRCA1 and 2,157 BRCA2 families in the Consortium of Investigators of Modifiers of BRCA1/2 to estimate age-specific relative (RR) and absolute risks for 22 first primary cancer types adjusting for family ascertainment.ResultsBRCA1 PVs were associated with risks of male breast (RR = 4.30; 95% CI, 1.09 to 16.96), pancreatic (RR = 2.36; 95% CI, 1.51 to 3.68), and stomach (RR = 2.17; 95% CI, 1.25 to 3.77) cancers. Associations with colorectal and gallbladder cancers were also suggested. BRCA2 PVs were associated with risks of male breast (RR = 44.0; 95% CI, 21.3 to 90.9), stomach (RR = 3.69; 95% CI, 2.40 to 5.67), pancreatic (RR = 3.34; 95% CI, 2.21 to 5.06), and prostate (RR = 2.22; 95% CI, 1.63 to 3.03) cancers. The stomach cancer RR was higher for females than males (6.89 v 2.76; P = .04). The absolute risks to age 80 years ranged from 0.4% for male breast cancer to approximately 2.5% for pancreatic cancer for BRCA1 carriers and from approximately 2.5% for pancreatic cancer to 27% for prostate cancer for BRCA2 carriers.ConclusionIn addition to female breast and ovarian cancers, BRCA1 and BRCA2 PVs are associated with increased risks of male breast, pancreatic, stomach, and prostate (only BRCA2 PVs) cancers, but not with the risks of other previously suggested cancers. The estimated age-specific risks will refine cancer risk management in men and women with BRCA1/2 PVs.
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- 2022
8. On accumulation points of volumes of stable surfaces with one cyclic quotient singularity
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Torres, Diana
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Mathematics - Algebraic Geometry - Abstract
The set of volumes of stable surfaces does have accumulation points. In this paper, we study this phenomenon for surfaces with one cyclic quotient singularity, towards answering the question under which conditions we can still have boundedness. Effective bounds allow listing singularities that might appear on a stable surface after fixing its invariants. We find optimal inequalities for stable surfaces with one cyclic quotient singularity, which can be used to prove boundedness under certain conditions. We also introduce the notion of generalized T-singularity, which is a natural generalization of the well-known T-singularities. By using our inequalities, we show how the accumulation points of volumes of stable surfaces with one generalized T-singularity are formed., Comment: 40 pages
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- 2021
9. Native American ancestry and breast cancer risk in Colombian and Mexican women: ruling out potential confounding through ancestry-informative markers
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Zollner, Linda, Torres, Diana, Briceno, Ignacio, Gilbert, Michael, Torres-Mejía, Gabriela, Dennis, Joe, Bolla, Manjeet K., Wang, Qin, Hamann, Ute, and Lorenzo Bermejo, Justo
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- 2023
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10. Fasciola hepatica primoinfections and reinfections in sheep drive distinct Th1/Th2/Treg immune responses in liver and hepatic lymph node at early and late stages
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Ruiz-Campillo, María Teresa, Barrero-Torres, Diana María, Abril, Nieves, Pérez, José, Zafra, Rafael, Buffoni, Leandro, Martínez-Moreno, Álvaro, Martínez-Moreno, Francisco Javier, and Molina-Hernández, Verónica
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- 2023
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11. Aggregation tests identify new gene associations with breast cancer in populations with diverse ancestry
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Mueller, Stefanie H., Lai, Alvina G., Valkovskaya, Maria, Michailidou, Kyriaki, Bolla, Manjeet K., Wang, Qin, Dennis, Joe, Lush, Michael, Abu-Ful, Zomoruda, Ahearn, Thomas U., Andrulis, Irene L., Anton-Culver, Hoda, Antonenkova, Natalia N., Arndt, Volker, Aronson, Kristan J., Augustinsson, Annelie, Baert, Thais, Freeman, Laura E. Beane, Beckmann, Matthias W., Behrens, Sabine, Benitez, Javier, Bermisheva, Marina, Blomqvist, Carl, Bogdanova, Natalia V., Bojesen, Stig E., Bonanni, Bernardo, Brenner, Hermann, Brucker, Sara Y., Buys, Saundra S., Castelao, Jose E., Chan, Tsun L., Chang-Claude, Jenny, Chanock, Stephen J., Choi, Ji-Yeob, Chung, Wendy K., Colonna, Sarah V., Cornelissen, Sten, Couch, Fergus J., Czene, Kamila, Daly, Mary B., Devilee, Peter, Dörk, Thilo, Dossus, Laure, Dwek, Miriam, Eccles, Diana M., Ekici, Arif B., Eliassen, A. Heather, Engel, Christoph, Evans, D. Gareth, Fasching, Peter A., Fletcher, Olivia, Flyger, Henrik, Gago-Dominguez, Manuela, Gao, Yu-Tang, García-Closas, Montserrat, García-Sáenz, José A., Genkinger, Jeanine, Gentry-Maharaj, Aleksandra, Grassmann, Felix, Guénel, Pascal, Gündert, Melanie, Haeberle, Lothar, Hahnen, Eric, Haiman, Christopher A., Håkansson, Niclas, Hall, Per, Harkness, Elaine F., Harrington, Patricia A., Hartikainen, Jaana M., Hartman, Mikael, Hein, Alexander, Ho, Weang-Kee, Hooning, Maartje J., Hoppe, Reiner, Hopper, John L., Houlston, Richard S., Howell, Anthony, Hunter, David J., Huo, Dezheng, Ito, Hidemi, Iwasaki, Motoki, Jakubowska, Anna, Janni, Wolfgang, John, Esther M., Jones, Michael E., Jung, Audrey, Kaaks, Rudolf, Kang, Daehee, Khusnutdinova, Elza K., Kim, Sung-Won, Kitahara, Cari M., Koutros, Stella, Kraft, Peter, Kristensen, Vessela N., Kubelka-Sabit, Katerina, Kurian, Allison W., Kwong, Ava, Lacey, James V., Lambrechts, Diether, Le Marchand, Loic, Li, Jingmei, Linet, Martha, Lo, Wing-Yee, Long, Jirong, Lophatananon, Artitaya, Mannermaa, Arto, Manoochehri, Mehdi, Margolin, Sara, Matsuo, Keitaro, Mavroudis, Dimitrios, Menon, Usha, Muir, Kenneth, Murphy, Rachel A., Nevanlinna, Heli, Newman, William G., Niederacher, Dieter, O’Brien, Katie M., Obi, Nadia, Offit, Kenneth, Olopade, Olufunmilayo I., Olshan, Andrew F., Olsson, Håkan, Park, Sue K., Patel, Alpa V., Patel, Achal, Perou, Charles M., Peto, Julian, Pharoah, Paul D. P., Plaseska-Karanfilska, Dijana, Presneau, Nadege, Rack, Brigitte, Radice, Paolo, Ramachandran, Dhanya, Rashid, Muhammad U., Rennert, Gad, Romero, Atocha, Ruddy, Kathryn J., Ruebner, Matthias, Saloustros, Emmanouil, Sandler, Dale P., Sawyer, Elinor J., Schmidt, Marjanka K., Schmutzler, Rita K., Schneider, Michael O., Scott, Christopher, Shah, Mitul, Sharma, Priyanka, Shen, Chen-Yang, Shu, Xiao-Ou, Simard, Jacques, Surowy, Harald, Tamimi, Rulla M., Tapper, William J., Taylor, Jack A., Teo, Soo Hwang, Teras, Lauren R., Toland, Amanda E., Tollenaar, Rob A. E. M., Torres, Diana, Torres-Mejía, Gabriela, Troester, Melissa A., Truong, Thérèse, Vachon, Celine M., Vijai, Joseph, Weinberg, Clarice R., Wendt, Camilla, Winqvist, Robert, Wolk, Alicja, Wu, Anna H., Yamaji, Taiki, Yang, Xiaohong R., Yu, Jyh-Cherng, Zheng, Wei, Ziogas, Argyrios, Ziv, Elad, Dunning, Alison M., Easton, Douglas F., Hemingway, Harry, Hamann, Ute, and Kuchenbaecker, Karoline B.
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- 2023
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12. Unraveling the microRNAs Involved in Fasciolosis: Master Regulators of the Host–Parasite Crosstalk.
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Barrero-Torres, Diana María, Herrera-Torres, Guillem, Pérez, José, Martínez-Moreno, Álvaro, Martínez-Moreno, Francisco Javier, Flores-Velázquez, Luis Miguel, Buffoni, Leandro, Rufino-Moya, Pablo José, Ruiz-Campillo, María Teresa, and Molina-Hernández, Verónica
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SCIENTIFIC knowledge , *FASCIOLA hepatica , *MESSENGER RNA , *NON-coding RNA , *FASCIOLIASIS - Abstract
Fasciolosis is a neglected tropical disease caused by helminth parasites of the genus Fasciola spp., including Fasciola hepatica (F. hepatica) and Fasciola gigantica (F. gigantica), being a major zoonotic problem of human and animal health. Its control with antihelminthics is becoming ineffective due to the increase in parasite resistance. Developing new therapeutic protocols is crucial to a deeper knowledge of the molecular bases in the host–parasite interactions. The high-throughput omics technologies have dramatically provided unprecedented insights into the complexity of the molecular host–parasite crosstalk. MicroRNAs (miRNAs) are key players as critical regulators in numerous biological processes, modifying the gene expression of cells by degradation of messenger RNA (mRNA), regulating transcription and translation functions, protein positioning, cell cycle integrity, differentiation and apoptosis. The large-scale exploration of miRNAs, including the miRNome, has offered great scientific knowledge of steps in fasciolosis, further scrutinizing the pathogenesis, the growth and development of their strains and their interaction with the host for the survival of the different parasite stages. This review compiles the updated knowledge related to miRNAs involved in fasciolosis and the generated miRNome, highlighting the importance of these key molecules in the host–parasite interactions and the pathogenesis of Fasciola spp. directing towards the development of new biotherapeutic protocols for the control of fasciolosis. [ABSTRACT FROM AUTHOR]
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- 2025
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13. Otava mental skill for sports 3 - validation and gender invariance for the portuguese version.
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Silva, Carlos, Torres, Diana, Louro, Hugo, Borrego, Carla, and Batista, Marco
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CONFIRMATORY factor analysis ,PSYCHOMETRICS ,GENDER - Abstract
Copyright of Retos: Nuevas Perspectivas de Educación Física, Deporte y Recreación is the property of Federacion Espanola de Asociaciones de Docentes de Educacion Fisica and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
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- 2024
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14. Predominant technical actions used in the European judo championship.
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Silva Batista, Marco Alexandre, Silva, Carlos, Torres, Diana, Conceição, Ana, Borrego, Carla, and Louro, Hugo
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COMBAT sports ,BODY composition ,JUDO ,PUNISHMENT ,CHAMPIONSHIPS - Abstract
Copyright of Retos: Nuevas Perspectivas de Educación Física, Deporte y Recreación is the property of Federacion Espanola de Asociaciones de Docentes de Educacion Fisica and its content may not be copied or emailed to multiple sites or posted to a listserv without the copyright holder's express written permission. However, users may print, download, or email articles for individual use. This abstract may be abridged. No warranty is given about the accuracy of the copy. Users should refer to the original published version of the material for the full abstract. (Copyright applies to all Abstracts.)
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- 2024
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15. Polygenic risk modeling for prediction of epithelial ovarian cancer risk
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Dareng, Eileen O., Tyrer, Jonathan P., Barnes, Daniel R., Jones, Michelle R., Yang, Xin, Aben, Katja K. H., Adank, Muriel A., Agata, Simona, Andrulis, Irene L., Anton-Culver, Hoda, Antonenkova, Natalia N., Aravantinos, Gerasimos, Arun, Banu K., Augustinsson, Annelie, Balmaña, Judith, Bandera, Elisa V., Barkardottir, Rosa B., Barrowdale, Daniel, Beckmann, Matthias W., Beeghly-Fadiel, Alicia, Benitez, Javier, Bermisheva, Marina, Bernardini, Marcus Q., Bjorge, Line, Black, Amanda, Bogdanova, Natalia V., Bonanni, Bernardo, Borg, Ake, Brenton, James D., Budzilowska, Agnieszka, Butzow, Ralf, Buys, Saundra S., Cai, Hui, Caligo, Maria A., Campbell, Ian, Cannioto, Rikki, Cassingham, Hayley, Chang-Claude, Jenny, Chanock, Stephen J., Chen, Kexin, Chiew, Yoke-Eng, Chung, Wendy K., Claes, Kathleen B. M., Colonna, Sarah, Cook, Linda S., Couch, Fergus J., Daly, Mary B., Dao, Fanny, Davies, Eleanor, de la Hoya, Miguel, de Putter, Robin, Dennis, Joe, DePersia, Allison, Devilee, Peter, Diez, Orland, Ding, Yuan Chun, Doherty, Jennifer A., Domchek, Susan M., Dörk, Thilo, du Bois, Andreas, Dürst, Matthias, Eccles, Diana M., Eliassen, Heather A., Engel, Christoph, Evans, Gareth D., Fasching, Peter A., Flanagan, James M., Fortner, Renée T., Machackova, Eva, Friedman, Eitan, Ganz, Patricia A., Garber, Judy, Gensini, Francesca, Giles, Graham G., Glendon, Gord, Godwin, Andrew K., Goodman, Marc T., Greene, Mark H., Gronwald, Jacek, Hahnen, Eric, Haiman, Christopher A., Håkansson, Niclas, Hamann, Ute, Hansen, Thomas V. O., Harris, Holly R., Hartman, Mikael, Heitz, Florian, Hildebrandt, Michelle A. T., Høgdall, Estrid, Høgdall, Claus K., Hopper, John L., Huang, Ruea-Yea, Huff, Chad, Hulick, Peter J., Huntsman, David G., Imyanitov, Evgeny N., Isaacs, Claudine, Jakubowska, Anna, James, Paul A., Janavicius, Ramunas, Jensen, Allan, Johannsson, Oskar Th., John, Esther M., Jones, Michael E., Kang, Daehee, Karlan, Beth Y., Karnezis, Anthony, Kelemen, Linda E., Khusnutdinova, Elza, Kiemeney, Lambertus A., Kim, Byoung-Gie, Kjaer, Susanne K., Komenaka, Ian, Kupryjanczyk, Jolanta, Kurian, Allison W., Kwong, Ava, Lambrechts, Diether, Larson, Melissa C., Lazaro, Conxi, Le, Nhu D., Leslie, Goska, Lester, Jenny, Lesueur, Fabienne, Levine, Douglas A., Li, Lian, Li, Jingmei, Loud, Jennifer T., Lu, Karen H., Lubiński, Jan, Mai, Phuong L., Manoukian, Siranoush, Marks, Jeffrey R., Matsuno, Rayna Kim, Matsuo, Keitaro, May, Taymaa, McGuffog, Lesley, McLaughlin, John R., McNeish, Iain A., Mebirouk, Noura, Menon, Usha, Miller, Austin, Milne, Roger L., Minlikeeva, Albina, Modugno, Francesmary, Montagna, Marco, Moysich, Kirsten B., Munro, Elizabeth, Nathanson, Katherine L., Neuhausen, Susan L., Nevanlinna, Heli, Yie, Joanne Ngeow Yuen, Nielsen, Henriette Roed, Nielsen, Finn C., Nikitina-Zake, Liene, Odunsi, Kunle, Offit, Kenneth, Olah, Edith, Olbrecht, Siel, Olopade, Olufunmilayo I., Olson, Sara H., Olsson, Håkan, Osorio, Ana, Papi, Laura, Park, Sue K., Parsons, Michael T., Pathak, Harsha, Pedersen, Inge Sokilde, Peixoto, Ana, Pejovic, Tanja, Perez-Segura, Pedro, Permuth, Jennifer B., Peshkin, Beth, Peterlongo, Paolo, Piskorz, Anna, Prokofyeva, Darya, Radice, Paolo, Rantala, Johanna, Riggan, Marjorie J., Risch, Harvey A., Rodriguez-Antona, Cristina, Ross, Eric, Rossing, Mary Anne, Runnebaum, Ingo, Sandler, Dale P., Santamariña, Marta, Soucy, Penny, Schmutzler, Rita K., Setiawan, V. Wendy, Shan, Kang, Sieh, Weiva, Simard, Jacques, Singer, Christian F., Sokolenko, Anna P., Song, Honglin, Southey, Melissa C., Steed, Helen, Stoppa-Lyonnet, Dominique, Sutphen, Rebecca, Swerdlow, Anthony J., Tan, Yen Yen, Teixeira, Manuel R., Teo, Soo Hwang, Terry, Kathryn L., Terry, Mary Beth, Thomassen, Mads, Thompson, Pamela J., Thomsen, Liv Cecilie Vestrheim, Thull, Darcy L., Tischkowitz, Marc, Titus, Linda, Toland, Amanda E., Torres, Diana, Trabert, Britton, Travis, Ruth, Tung, Nadine, Tworoger, Shelley S., Valen, Ellen, van Altena, Anne M., van der Hout, Annemieke H., Van Nieuwenhuysen, Els, van Rensburg, Elizabeth J., Vega, Ana, Edwards, Digna Velez, Vierkant, Robert A., Wang, Frances, Wappenschmidt, Barbara, Webb, Penelope M., Weinberg, Clarice R., Weitzel, Jeffrey N., Wentzensen, Nicolas, White, Emily, Whittemore, Alice S., Winham, Stacey J., Wolk, Alicja, Woo, Yin-Ling, Wu, Anna H., Yan, Li, Yannoukakos, Drakoulis, Zavaglia, Katia M., Zheng, Wei, Ziogas, Argyrios, Zorn, Kristin K., Kleibl, Zdenek, Easton, Douglas, Lawrenson, Kate, DeFazio, Anna, Sellers, Thomas A., Ramus, Susan J., Pearce, Celeste L., Monteiro, Alvaro N., Cunningham, Julie, Goode, Ellen L., Schildkraut, Joellen M., Berchuck, Andrew, Chenevix-Trench, Georgia, Gayther, Simon A., Antoniou, Antonis C., and Pharoah, Paul D. P.
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- 2022
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16. Mutational spectrum in a worldwide study of 29,700 families with BRCA1 or BRCA2 mutations.
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Rebbeck, Timothy R, Friebel, Tara M, Friedman, Eitan, Hamann, Ute, Huo, Dezheng, Kwong, Ava, Olah, Edith, Olopade, Olufunmilayo I, Solano, Angela R, Teo, Soo-Hwang, Thomassen, Mads, Weitzel, Jeffrey N, Chan, TL, Couch, Fergus J, Goldgar, David E, Kruse, Torben A, Palmero, Edenir Inêz, Park, Sue Kyung, Torres, Diana, van Rensburg, Elizabeth J, McGuffog, Lesley, Parsons, Michael T, Leslie, Goska, Aalfs, Cora M, Abugattas, Julio, Adlard, Julian, Agata, Simona, Aittomäki, Kristiina, Andrews, Lesley, Andrulis, Irene L, Arason, Adalgeir, Arnold, Norbert, Arun, Banu K, Asseryanis, Ella, Auerbach, Leo, Azzollini, Jacopo, Balmaña, Judith, Barile, Monica, Barkardottir, Rosa B, Barrowdale, Daniel, Benitez, Javier, Berger, Andreas, Berger, Raanan, Blanco, Amie M, Blazer, Kathleen R, Blok, Marinus J, Bonadona, Valérie, Bonanni, Bernardo, Bradbury, Angela R, Brewer, Carole, Buecher, Bruno, Buys, Saundra S, Caldes, Trinidad, Caliebe, Almuth, Caligo, Maria A, Campbell, Ian, Caputo, Sandrine M, Chiquette, Jocelyne, Chung, Wendy K, Claes, Kathleen BM, Collée, J Margriet, Cook, Jackie, Davidson, Rosemarie, de la Hoya, Miguel, De Leeneer, Kim, de Pauw, Antoine, Delnatte, Capucine, Diez, Orland, Ding, Yuan Chun, Ditsch, Nina, Domchek, Susan M, Dorfling, Cecilia M, Velazquez, Carolina, Dworniczak, Bernd, Eason, Jacqueline, Easton, Douglas F, Eeles, Ros, Ehrencrona, Hans, Ejlertsen, Bent, EMBRACE, Engel, Christoph, Engert, Stefanie, Evans, D Gareth, Faivre, Laurence, Feliubadaló, Lidia, Ferrer, Sandra Fert, Foretova, Lenka, Fowler, Jeffrey, Frost, Debra, Galvão, Henrique CR, Ganz, Patricia A, Garber, Judy, Gauthier-Villars, Marion, Gehrig, Andrea, GEMO Study Collaborators, Gerdes, Anne-Marie, Gesta, Paul, Giannini, Giuseppe, Giraud, Sophie, and Glendon, Gord
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EMBRACE ,GEMO Study Collaborators ,HEBON ,Humans ,BRCA1 Protein ,BRCA2 Protein ,Family ,Mutation ,Geography ,Internationality ,Databases ,Genetic ,BRCA1 ,BRCA2 ,breast cancer ,ethnicity ,geography ,mutation ,ovarian cancer ,Databases ,Genetic ,Genetics & Heredity ,Genetics ,Clinical Sciences - Abstract
The prevalence and spectrum of germline mutations in BRCA1 and BRCA2 have been reported in single populations, with the majority of reports focused on White in Europe and North America. The Consortium of Investigators of Modifiers of BRCA1/2 (CIMBA) has assembled data on 18,435 families with BRCA1 mutations and 11,351 families with BRCA2 mutations ascertained from 69 centers in 49 countries on six continents. This study comprehensively describes the characteristics of the 1,650 unique BRCA1 and 1,731 unique BRCA2 deleterious (disease-associated) mutations identified in the CIMBA database. We observed substantial variation in mutation type and frequency by geographical region and race/ethnicity. In addition to known founder mutations, mutations of relatively high frequency were identified in specific racial/ethnic or geographic groups that may reflect founder mutations and which could be used in targeted (panel) first pass genotyping for specific populations. Knowledge of the population-specific mutational spectrum in BRCA1 and BRCA2 could inform efficient strategies for genetic testing and may justify a more broad-based oncogenetic testing in some populations.
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- 2018
17. Breast cancer risks associated with missense variants in breast cancer susceptibility genes
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Dorling, Leila, Carvalho, Sara, Allen, Jamie, Parsons, Michael T., Fortuno, Cristina, González-Neira, Anna, Heijl, Stephan M., Adank, Muriel A., Ahearn, Thomas U., Andrulis, Irene L., Auvinen, Päivi, Becher, Heiko, Beckmann, Matthias W., Behrens, Sabine, Bermisheva, Marina, Bogdanova, Natalia V., Bojesen, Stig E., Bolla, Manjeet K., Bremer, Michael, Briceno, Ignacio, Camp, Nicola J., Campbell, Archie, Castelao, Jose E., Chang-Claude, Jenny, Chanock, Stephen J., Chenevix-Trench, Georgia, Collée, J. Margriet, Czene, Kamila, Dennis, Joe, Dörk, Thilo, Eriksson, Mikael, Evans, D. Gareth, Fasching, Peter A., Figueroa, Jonine, Flyger, Henrik, Gabrielson, Marike, Gago-Dominguez, Manuela, García-Closas, Montserrat, Giles, Graham G., Glendon, Gord, Guénel, Pascal, Gündert, Melanie, Hadjisavvas, Andreas, Hahnen, Eric, Hall, Per, Hamann, Ute, Harkness, Elaine F., Hartman, Mikael, Hogervorst, Frans B. L., Hollestelle, Antoinette, Hoppe, Reiner, Howell, Anthony, Jakubowska, Anna, Jung, Audrey, Khusnutdinova, Elza, Kim, Sung-Won, Ko, Yon-Dschun, Kristensen, Vessela N., Lakeman, Inge M. M., Li, Jingmei, Lindblom, Annika, Loizidou, Maria A., Lophatananon, Artitaya, Lubiński, Jan, Luccarini, Craig, Madsen, Michael J., Mannermaa, Arto, Manoochehri, Mehdi, Margolin, Sara, Mavroudis, Dimitrios, Milne, Roger L., Mohd Taib, Nur Aishah, Muir, Kenneth, Nevanlinna, Heli, Newman, William G., Oosterwijk, Jan C., Park, Sue K., Peterlongo, Paolo, Radice, Paolo, Saloustros, Emmanouil, Sawyer, Elinor J., Schmutzler, Rita K., Shah, Mitul, Sim, Xueling, Southey, Melissa C., Surowy, Harald, Suvanto, Maija, Tomlinson, Ian, Torres, Diana, Truong, Thérèse, van Asperen, Christi J., Waltes, Regina, Wang, Qin, Yang, Xiaohong R., Pharoah, Paul D. P., Schmidt, Marjanka K., Benitez, Javier, Vroling, Bas, Dunning, Alison M., Teo, Soo Hwang, Kvist, Anders, de la Hoya, Miguel, Devilee, Peter, Spurdle, Amanda B., Vreeswijk, Maaike P. G., and Easton, Douglas F.
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- 2022
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18. Common variants in breast cancer risk loci predispose to distinct tumor subtypes
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Ahearn, Thomas U., Zhang, Haoyu, Michailidou, Kyriaki, Milne, Roger L., Bolla, Manjeet K., Dennis, Joe, Dunning, Alison M., Lush, Michael, Wang, Qin, Andrulis, Irene L., Anton-Culver, Hoda, Arndt, Volker, Aronson, Kristan J., Auer, Paul L., Augustinsson, Annelie, Baten, Adinda, Becher, Heiko, Behrens, Sabine, Benitez, Javier, Bermisheva, Marina, Blomqvist, Carl, Bojesen, Stig E., Bonanni, Bernardo, Børresen-Dale, Anne-Lise, Brauch, Hiltrud, Brenner, Hermann, Brooks-Wilson, Angela, Brüning, Thomas, Burwinkel, Barbara, Buys, Saundra S., Canzian, Federico, Castelao, Jose E., Chang-Claude, Jenny, Chanock, Stephen J., Chenevix-Trench, Georgia, Clarke, Christine L., Collée, J. Margriet, Cox, Angela, Cross, Simon S., Czene, Kamila, Daly, Mary B., Devilee, Peter, Dörk, Thilo, Dwek, Miriam, Eccles, Diana M., Evans, D. Gareth, Fasching, Peter A., Figueroa, Jonine, Floris, Giuseppe, Gago-Dominguez, Manuela, Gapstur, Susan M., García-Sáenz, José A., Gaudet, Mia M., Giles, Graham G., Goldberg, Mark S., González-Neira, Anna, Alnæs, Grethe I. Grenaker, Grip, Mervi, Guénel, Pascal, Haiman, Christopher A., Hall, Per, Hamann, Ute, Harkness, Elaine F., Heemskerk-Gerritsen, Bernadette A. M., Holleczek, Bernd, Hollestelle, Antoinette, Hooning, Maartje J., Hoover, Robert N., Hopper, John L., Howell, Anthony, Jakimovska, Milena, Jakubowska, Anna, John, Esther M., Jones, Michael E., Jung, Audrey, Kaaks, Rudolf, Kauppila, Saila, Keeman, Renske, Khusnutdinova, Elza, Kitahara, Cari M., Ko, Yon-Dschun, Koutros, Stella, Kristensen, Vessela N., Krüger, Ute, Kubelka-Sabit, Katerina, Kurian, Allison W., Kyriacou, Kyriacos, Lambrechts, Diether, Lee, Derrick G., Lindblom, Annika, Linet, Martha, Lissowska, Jolanta, Llaneza, Ana, Lo, Wing-Yee, MacInnis, Robert J., Mannermaa, Arto, Manoochehri, Mehdi, Margolin, Sara, Martinez, Maria Elena, McLean, Catriona, Meindl, Alfons, Menon, Usha, Nevanlinna, Heli, Newman, William G., Nodora, Jesse, Offit, Kenneth, Olsson, Håkan, Orr, Nick, Park-Simon, Tjoung-Won, Patel, Alpa V., Peto, Julian, Pita, Guillermo, Plaseska-Karanfilska, Dijana, Prentice, Ross, Punie, Kevin, Pylkäs, Katri, Radice, Paolo, Rennert, Gad, Romero, Atocha, Rüdiger, Thomas, Saloustros, Emmanouil, Sampson, Sarah, Sandler, Dale P., Sawyer, Elinor J., Schmutzler, Rita K., Schoemaker, Minouk J., Schöttker, Ben, Sherman, Mark E., Shu, Xiao-Ou, Smichkoska, Snezhana, Southey, Melissa C., Spinelli, John J., Swerdlow, Anthony J., Tamimi, Rulla M., Tapper, William J., Taylor, Jack A., Teras, Lauren R., Terry, Mary Beth, Torres, Diana, Troester, Melissa A., Vachon, Celine M., van Deurzen, Carolien H. M., van Veen, Elke M., Wagner, Philippe, Weinberg, Clarice R., Wendt, Camilla, Wesseling, Jelle, Winqvist, Robert, Wolk, Alicja, Yang, Xiaohong R., Zheng, Wei, Couch, Fergus J., Simard, Jacques, Kraft, Peter, Easton, Douglas F., Pharoah, Paul D. P., Schmidt, Marjanka K., García-Closas, Montserrat, and Chatterjee, Nilanjan
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- 2022
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19. UCI EyeMobile Exam Findings from School Children Following on-Site Screening
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Hong, John, primary, Choi, Elliot, additional, Suh, Susie, additional, Bui, Joseph, additional, Storch, Annabelle, additional, Walker, Kimberly, additional, Shahraki, Kourosh, additional, Yanez, Carolina, additional, Torres, Diana, additional, Espinoza, Jennifer, additional, Molina, Iliana, additional, and Suh, Donny, additional
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- 2024
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20. Mimetización de corona cerámica libre de metal de un incisivo central superior. Reporte de caso
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Ochoa-Vázquez, Boris Lenin, Cedillo-Orellana, Sara Ivanna, Guachizaca-Uyaguari, Rommel Patricio, and Gallegos-Torres, Diana Karolina
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- 2021
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21. A novel barcoded nanopore sequencing workflow of high-quality, full-length bacterial 16S amplicons for taxonomic annotation of bacterial isolates and complex microbial communities.
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Dommann, Julian, Kerbl-Knapp, Jakob, Torres, Diana Albertos, Egli, Adrian, Keiser, Jennifer, and Schneeberger, Pierre H. H.
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- 2024
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22. Association of breast cancer risk with genetic variants showing differential allelic expression: Identification of a novel breast cancer susceptibility locus at 4q21
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Hamdi, Yosr, Soucy, Penny, Adoue, Véronique, Michailidou, Kyriaki, Canisius, Sander, Lemaçon, Audrey, Droit, Arnaud, Andrulis, Irene L, Anton-Culver, Hoda, Arndt, Volker, Baynes, Caroline, Blomqvist, Carl, Bogdanova, Natalia V, Bojesen, Stig E, Bolla, Manjeet K, Bonanni, Bernardo, Borresen-Dale, Anne-Lise, Brand, Judith S, Brauch, Hiltrud, Brenner, Hermann, Broeks, Annegien, Burwinkel, Barbara, Chang-Claude, Jenny, Couch, Fergus J, Cox, Angela, Cross, Simon S, Czene, Kamila, Darabi, Hatef, Dennis, Joe, Devilee, Peter, Dörk, Thilo, Dos-Santos-Silva, Isabel, Eriksson, Mikael, Fasching, Peter A, Figueroa, Jonine, Flyger, Henrik, García-Closas, Montserrat, Giles, Graham G, Goldberg, Mark S, González-Neira, Anna, Grenaker-Alnæs, Grethe, Guénel, Pascal, Haeberle, Lothar, Haiman, Christopher A, Hamann, Ute, Hallberg, Emily, Hooning, Maartje J, Hopper, John L, Jakubowska, Anna, Jones, Michael, Kabisch, Maria, Kataja, Vesa, Lambrechts, Diether, Marchand, Loic Le, Lindblom, Annika, Lubinski, Jan, Mannermaa, Arto, Maranian, Mel, Margolin, Sara, Marme, Frederik, Milne, Roger L, Neuhausen, Susan L, Nevanlinna, Heli, Neven, Patrick, Olswold, Curtis, Peto, Julian, Plaseska-Karanfilska, Dijana, Pylkäs, Katri, Radice, Paolo, Rudolph, Anja, Sawyer, Elinor J, Schmidt, Marjanka K, Shu, Xiao-Ou, Southey, Melissa C, Swerdlow, Anthony, Tollenaar, Rob AEM, Tomlinson, Ian, Torres, Diana, Truong, Thérèse, Vachon, Celine, Van Den Ouweland, Ans MW, Wang, Qin, Winqvist, Robert, Investigators, kConFab AOCS, Zheng, Wei, Benitez, Javier, Chenevix-Trench, Georgia, Dunning, Alison M, Pharoah, Paul DP, Kristensen, Vessela, Hall, Per, Easton, Douglas F, Pastinen, Tomi, Nord, Silje, and Simard, Jacques
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Human Genome ,Cancer ,Breast Cancer ,Prevention ,Genetics ,Biotechnology ,2.1 Biological and endogenous factors ,Aetiology ,Biomarkers ,Tumor ,Breast Neoplasms ,Canada ,Carrier Proteins ,Case-Control Studies ,Chromosomes ,Human ,Pair 4 ,DNA Helicases ,Europe ,Female ,Gene Frequency ,Genetic Association Studies ,Genetic Predisposition to Disease ,Humans ,Linkage Disequilibrium ,Mitochondrial Proteins ,Odds Ratio ,Phenotype ,Polymorphism ,Single Nucleotide ,Quantitative Trait Loci ,Risk Assessment ,Risk Factors ,breast cancer ,genetic susceptibility ,association studies ,differential allelic expression ,cis-regulatory variants ,NBCS Collaborators ,kConFab/AOCS Investigators ,Oncology and Carcinogenesis - Abstract
There are significant inter-individual differences in the levels of gene expression. Through modulation of gene expression, cis-acting variants represent an important source of phenotypic variation. Consequently, cis-regulatory SNPs associated with differential allelic expression are functional candidates for further investigation as disease-causing variants. To investigate whether common variants associated with differential allelic expression were involved in breast cancer susceptibility, a list of genes was established on the basis of their involvement in cancer related pathways and/or mechanisms. Thereafter, using data from a genome-wide map of allelic expression associated SNPs, 313 genetic variants were selected and their association with breast cancer risk was then evaluated in 46,451 breast cancer cases and 42,599 controls of European ancestry ascertained from 41 studies participating in the Breast Cancer Association Consortium. The associations were evaluated with overall breast cancer risk and with estrogen receptor negative and positive disease. One novel breast cancer susceptibility locus on 4q21 (rs11099601) was identified (OR = 1.05, P = 5.6x10-6). rs11099601 lies in a 135 kb linkage disequilibrium block containing several genes, including, HELQ, encoding the protein HEL308 a DNA dependant ATPase and DNA Helicase involved in DNA repair, MRPS18C encoding the Mitochondrial Ribosomal Protein S18C and FAM175A (ABRAXAS), encoding a BRCA1 BRCT domain-interacting protein involved in DNA damage response and double-strand break (DSB) repair. Expression QTL analysis in breast cancer tissue showed rs11099601 to be associated with HELQ (P = 8.28x10-14), MRPS18C (P = 1.94x10-27) and FAM175A (P = 3.83x10-3), explaining about 20%, 14% and 1%, respectively of the variance inexpression of these genes in breast carcinomas.
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- 2016
23. Fine‐scale mapping of 8q24 locus identifies multiple independent risk variants for breast cancer
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Shi, Jiajun, Zhang, Yanfeng, Zheng, Wei, Michailidou, Kyriaki, Ghoussaini, Maya, Bolla, Manjeet K, Wang, Qin, Dennis, Joe, Lush, Michael, Milne, Roger L, Shu, Xiao‐Ou, Beesley, Jonathan, Kar, Siddhartha, Andrulis, Irene L, Anton‐Culver, Hoda, Arndt, Volker, Beckmann, Matthias W, Zhao, Zhiguo, Guo, Xingyi, Benitez, Javier, Beeghly‐Fadiel, Alicia, Blot, William, Bogdanova, Natalia V, Bojesen, Stig E, Brauch, Hiltrud, Brenner, Hermann, Brinton, Louise, Broeks, Annegien, Brüning, Thomas, Burwinkel, Barbara, Cai, Hui, Canisius, Sander, Chang‐Claude, Jenny, Choi, Ji‐Yeob, Couch, Fergus J, Cox, Angela, Cross, Simon S, Czene, Kamila, Darabi, Hatef, Devilee, Peter, Droit, Arnaud, Dork, Thilo, Fasching, Peter A, Fletcher, Olivia, Flyger, Henrik, Fostira, Florentia, Gaborieau, Valerie, García‐Closas, Montserrat, Giles, Graham G, Grip, Mervi, Guenel, Pascal, Haiman, Christopher A, Hamann, Ute, Hartman, Mikael, Miao, Hui, Hollestelle, Antoinette, Hopper, John L, Hsiung, Chia‐Ni, Investigators, kConFab, Ito, Hidemi, Jakubowska, Anna, Johnson, Nichola, Torres, Diana, Kabisch, Maria, Kang, Daehee, Khan, Sofia, Knight, Julia A, Kosma, Veli‐Matti, Lambrechts, Diether, Li, Jingmei, Lindblom, Annika, Lophatananon, Artitaya, Lubinski, Jan, Mannermaa, Arto, Manoukian, Siranoush, Le Marchand, Loic, Margolin, Sara, Marme, Frederik, Matsuo, Keitaro, McLean, Catriona, Meindl, Alfons, Muir, Kenneth, Neuhausen, Susan L, Nevanlinna, Heli, Nord, Silje, Børresen‐Dale, Anne‐Lise, Olson, Janet E, Orr, Nick, van den Ouweland, Ans MW, Peterlongo, Paolo, Putti, Thomas Choudary, Rudolph, Anja, Sangrajrang, Suleeporn, Sawyer, Elinor J, Schmidt, Marjanka K, Schmutzler, Rita K, Shen, Chen‐Yang, Hou, Ming‐Feng, Shrubsole, Matha J, and Southey, Melissa C
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Genetics ,Cancer ,Breast Cancer ,Human Genome ,Aetiology ,2.1 Biological and endogenous factors ,Alleles ,Breast Neoplasms ,Case-Control Studies ,Chromosome Mapping ,Chromosomes ,Human ,Pair 8 ,Female ,Genetic Variation ,Genome-Wide Association Study ,Genotype ,Haplotypes ,Humans ,Linkage Disequilibrium ,Odds Ratio ,Polymorphism ,Single Nucleotide ,Quantitative Trait Loci ,Risk ,White People ,breast cancer ,genetic susceptibility ,8q24 ,fine-mapping ,single nucleotide polymorphism ,Mervi Grip ,kConFab Investigators ,Oncology and Carcinogenesis ,Oncology & Carcinogenesis - Abstract
Previous genome-wide association studies among women of European ancestry identified two independent breast cancer susceptibility loci represented by single nucleotide polymorphisms (SNPs) rs13281615 and rs11780156 at 8q24. A fine-mapping study across 2.06 Mb (chr8:127,561,724-129,624,067, hg19) in 55,540 breast cancer cases and 51,168 controls within the Breast Cancer Association Consortium was conducted. Three additional independent association signals in women of European ancestry, represented by rs35961416 (OR = 0.95, 95% CI = 0.93-0.97, conditional p = 5.8 × 10(-6) ), rs7815245 (OR = 0.94, 95% CI = 0.91-0.96, conditional p = 1.1 × 10(-6) ) and rs2033101 (OR = 1.05, 95% CI = 1.02-1.07, conditional p = 1.1 × 10(-4) ) were found. Integrative analysis using functional genomic data from the Roadmap Epigenomics, the Encyclopedia of DNA Elements project, the Cancer Genome Atlas and other public resources implied that SNPs rs7815245 in Signal 3, and rs1121948 in Signal 5 (in linkage disequilibrium with rs11780156, r(2) = 0.77), were putatively functional variants for two of the five independent association signals. The results highlighted multiple 8q24 variants associated with breast cancer susceptibility in women of European ancestry.
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- 2016
24. Fine scale mapping of the 17q22 breast cancer locus using dense SNPs, genotyped within the Collaborative Oncological Gene-Environment Study (COGs).
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Darabi, Hatef, Beesley, Jonathan, Droit, Arnaud, Kar, Siddhartha, Nord, Silje, Moradi Marjaneh, Mahdi, Soucy, Penny, Michailidou, Kyriaki, Ghoussaini, Maya, Fues Wahl, Hanna, Bolla, Manjeet K, Wang, Qin, Dennis, Joe, Alonso, M Rosario, Andrulis, Irene L, Anton-Culver, Hoda, Arndt, Volker, Beckmann, Matthias W, Benitez, Javier, Bogdanova, Natalia V, Bojesen, Stig E, Brauch, Hiltrud, Brenner, Hermann, Broeks, Annegien, Brüning, Thomas, Burwinkel, Barbara, Chang-Claude, Jenny, Choi, Ji-Yeob, Conroy, Don M, Couch, Fergus J, Cox, Angela, Cross, Simon S, Czene, Kamila, Devilee, Peter, Dörk, Thilo, Easton, Douglas F, Fasching, Peter A, Figueroa, Jonine, Fletcher, Olivia, Flyger, Henrik, Galle, Eva, García-Closas, Montserrat, Giles, Graham G, Goldberg, Mark S, González-Neira, Anna, Guénel, Pascal, Haiman, Christopher A, Hallberg, Emily, Hamann, Ute, Hartman, Mikael, Hollestelle, Antoinette, Hopper, John L, Ito, Hidemi, Jakubowska, Anna, Johnson, Nichola, Kang, Daehee, Khan, Sofia, Kosma, Veli-Matti, Kriege, Mieke, Kristensen, Vessela, Lambrechts, Diether, Le Marchand, Loic, Lee, Soo Chin, Lindblom, Annika, Lophatananon, Artitaya, Lubinski, Jan, Mannermaa, Arto, Manoukian, Siranoush, Margolin, Sara, Matsuo, Keitaro, Mayes, Rebecca, McKay, James, Meindl, Alfons, Milne, Roger L, Muir, Kenneth, Neuhausen, Susan L, Nevanlinna, Heli, Olswold, Curtis, Orr, Nick, Peterlongo, Paolo, Pita, Guillermo, Pylkäs, Katri, Rudolph, Anja, Sangrajrang, Suleeporn, Sawyer, Elinor J, Schmidt, Marjanka K, Schmutzler, Rita K, Seynaeve, Caroline, Shah, Mitul, Shen, Chen-Yang, Shu, Xiao-Ou, Southey, Melissa C, Stram, Daniel O, Surowy, Harald, Swerdlow, Anthony, Teo, Soo H, Tessier, Daniel C, Tomlinson, Ian, Torres, Diana, and Truong, Thérèse
- Abstract
Genome-wide association studies have found SNPs at 17q22 to be associated with breast cancer risk. To identify potential causal variants related to breast cancer risk, we performed a high resolution fine-mapping analysis that involved genotyping 517 SNPs using a custom Illumina iSelect array (iCOGS) followed by imputation of genotypes for 3,134 SNPs in more than 89,000 participants of European ancestry from the Breast Cancer Association Consortium (BCAC). We identified 28 highly correlated common variants, in a 53 Kb region spanning two introns of the STXBP4 gene, that are strong candidates for driving breast cancer risk (lead SNP rs2787486 (OR = 0.92; CI 0.90-0.94; P = 8.96 × 10(-15))) and are correlated with two previously reported risk-associated variants at this locus, SNPs rs6504950 (OR = 0.94, P = 2.04 × 10(-09), r(2) = 0.73 with lead SNP) and rs1156287 (OR = 0.93, P = 3.41 × 10(-11), r(2) = 0.83 with lead SNP). Analyses indicate only one causal SNP in the region and several enhancer elements targeting STXBP4 are located within the 53 kb association signal. Expression studies in breast tumor tissues found SNP rs2787486 to be associated with increased STXBP4 expression, suggesting this may be a target gene of this locus.
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- 2016
25. Genetically Predicted Body Mass Index and Breast Cancer Risk: Mendelian Randomization Analyses of Data from 145,000 Women of European Descent.
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Guo, Yan, Warren Andersen, Shaneda, Shu, Xiao-Ou, Michailidou, Kyriaki, Bolla, Manjeet K, Wang, Qin, Garcia-Closas, Montserrat, Milne, Roger L, Schmidt, Marjanka K, Chang-Claude, Jenny, Dunning, Allison, Bojesen, Stig E, Ahsan, Habibul, Aittomäki, Kristiina, Andrulis, Irene L, Anton-Culver, Hoda, Arndt, Volker, Beckmann, Matthias W, Beeghly-Fadiel, Alicia, Benitez, Javier, Bogdanova, Natalia V, Bonanni, Bernardo, Børresen-Dale, Anne-Lise, Brand, Judith, Brauch, Hiltrud, Brenner, Hermann, Brüning, Thomas, Burwinkel, Barbara, Casey, Graham, Chenevix-Trench, Georgia, Couch, Fergus J, Cox, Angela, Cross, Simon S, Czene, Kamila, Devilee, Peter, Dörk, Thilo, Dumont, Martine, Fasching, Peter A, Figueroa, Jonine, Flesch-Janys, Dieter, Fletcher, Olivia, Flyger, Henrik, Fostira, Florentia, Gammon, Marilie, Giles, Graham G, Guénel, Pascal, Haiman, Christopher A, Hamann, Ute, Hooning, Maartje J, Hopper, John L, Jakubowska, Anna, Jasmine, Farzana, Jenkins, Mark, John, Esther M, Johnson, Nichola, Jones, Michael E, Kabisch, Maria, Kibriya, Muhammad, Knight, Julia A, Koppert, Linetta B, Kosma, Veli-Matti, Kristensen, Vessela, Le Marchand, Loic, Lee, Eunjung, Li, Jingmei, Lindblom, Annika, Luben, Robert, Lubinski, Jan, Malone, Kathi E, Mannermaa, Arto, Margolin, Sara, Marme, Frederik, McLean, Catriona, Meijers-Heijboer, Hanne, Meindl, Alfons, Neuhausen, Susan L, Nevanlinna, Heli, Neven, Patrick, Olson, Janet E, Perez, Jose IA, Perkins, Barbara, Peterlongo, Paolo, Phillips, Kelly-Anne, Pylkäs, Katri, Rudolph, Anja, Santella, Regina, Sawyer, Elinor J, Schmutzler, Rita K, Seynaeve, Caroline, Shah, Mitul, Shrubsole, Martha J, Southey, Melissa C, Swerdlow, Anthony J, Toland, Amanda E, Tomlinson, Ian, Torres, Diana, Truong, Thérèse, Ursin, Giske, Van Der Luijt, Rob B, and Verhoef, Senno
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Humans ,Breast Neoplasms ,Genetic Predisposition to Disease ,Body Mass Index ,Models ,Statistical ,Risk Factors ,Menopause ,Polymorphism ,Single Nucleotide ,Middle Aged ,European Continental Ancestry Group ,Female ,Mendelian Randomization Analysis ,Models ,Statistical ,Polymorphism ,Single Nucleotide ,Genetics ,Prevention ,Breast Cancer ,Nutrition ,Clinical Research ,Cancer ,Aging ,Human Genome ,2.1 Biological and endogenous factors ,General & Internal Medicine ,Medical and Health Sciences - Abstract
BackgroundObservational epidemiological studies have shown that high body mass index (BMI) is associated with a reduced risk of breast cancer in premenopausal women but an increased risk in postmenopausal women. It is unclear whether this association is mediated through shared genetic or environmental factors.MethodsWe applied Mendelian randomization to evaluate the association between BMI and risk of breast cancer occurrence using data from two large breast cancer consortia. We created a weighted BMI genetic score comprising 84 BMI-associated genetic variants to predicted BMI. We evaluated genetically predicted BMI in association with breast cancer risk using individual-level data from the Breast Cancer Association Consortium (BCAC) (cases = 46,325, controls = 42,482). We further evaluated the association between genetically predicted BMI and breast cancer risk using summary statistics from 16,003 cases and 41,335 controls from the Discovery, Biology, and Risk of Inherited Variants in Breast Cancer (DRIVE) Project. Because most studies measured BMI after cancer diagnosis, we could not conduct a parallel analysis to adequately evaluate the association of measured BMI with breast cancer risk prospectively.ResultsIn the BCAC data, genetically predicted BMI was found to be inversely associated with breast cancer risk (odds ratio [OR] = 0.65 per 5 kg/m2 increase, 95% confidence interval [CI]: 0.56-0.75, p = 3.32 × 10-10). The associations were similar for both premenopausal (OR = 0.44, 95% CI:0.31-0.62, p = 9.91 × 10-8) and postmenopausal breast cancer (OR = 0.57, 95% CI: 0.46-0.71, p = 1.88 × 10-8). This association was replicated in the data from the DRIVE consortium (OR = 0.72, 95% CI: 0.60-0.84, p = 1.64 × 10-7). Single marker analyses identified 17 of the 84 BMI-associated single nucleotide polymorphisms (SNPs) in association with breast cancer risk at p
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- 2016
26. Association of genetic susceptibility variants for type 2 diabetes with breast cancer risk in women of European ancestry.
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Arndt, Volker, Beckmann, Matthias, Beeghly-Fadiel, Alicia, Benitez, Javier, Blomqvist, Carl, Bogdanova, Natalia, Børresen-Dale, Anne-Lise, Brand, Judith, Brauch, Hiltrud, Brenner, Hermann, Burwinkel, Barbara, Cai, Qiuyin, Casey, Graham, Chenevix-Trench, Georgia, Couch, Fergus, Cox, Angela, Cross, Simon, Czene, Kamila, Dörk, Thilo, Dumont, Martine, Fasching, Peter, Figueroa, Jonine, Flesch-Janys, Dieter, Fletcher, Olivia, Flyger, Henrik, Fostira, Florentia, Gammon, Marilie, Giles, Graham, Guénel, Pascal, Haiman, Christopher, Hamann, Ute, Harrington, Patricia, Hartman, Mikael, Hooning, Maartje, Hopper, John, Jakubowska, Anna, Jasmine, Farzana, John, Esther, Johnson, Nichola, Kabisch, Maria, Khan, Sofia, Kibriya, Muhammad, Knight, Julia, Kosma, Veli-Matti, Kriege, Mieke, Kristensen, Vessela, Le Marchand, Loic, Lee, Eunjung, Li, Jingmei, Lindblom, Annika, Lophatananon, Artitaya, Luben, Robert, Lubinski, Jan, Malone, Kathleen, Mannermaa, Arto, Manoukian, Siranoush, Margolin, Sara, Marme, Frederik, McLean, Catriona, Meijers-Heijboer, Hanne, Meindl, Alfons, Miao, Hui, Muir, Kenneth, Neuhausen, Susan, Nevanlinna, Heli, Neven, Patrick, Olson, Janet, Perkins, Barbara, Peterlongo, Paolo, Phillips, Kelly-Anne, Pylkäs, Katri, Rudolph, Anja, Santella, Regina, Sawyer, Elinor, Schmutzler, Rita, Schoemaker, Minouk, Shah, Mitul, Shrubsole, Martha, Southey, Melissa, Swerdlow, Anthony, Toland, Amanda, Tomlinson, Ian, Torres, Diana, Truong, Thérèse, Ursin, Giske, Van Der Luijt, Rob, Verhoef, Senno, Wang-Gohrke, Shan, Whittemore, Alice, Winqvist, Robert, Pilar Zamora, M, Zhao, Hui, Dunning, Alison, Simard, Jacques, Hall, Per, Kraft, Peter, Pharoah, Paul, Hunter, David, Easton, Douglas, and Zheng, Wei
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Breast cancer ,Epidemiology ,GWAS ,Genetic susceptibility ,Type 2 diabetes ,Breast Neoplasms ,Case-Control Studies ,Diabetes Mellitus ,Type 2 ,Ethnicity ,Female ,Genetic Predisposition to Disease ,Genetic Variation ,Humans ,Middle Aged ,Odds Ratio ,Polymorphism ,Single Nucleotide ,Risk Factors ,White People - Abstract
PURPOSE: Type 2 diabetes (T2D) has been reported to be associated with an elevated risk of breast cancer. It is unclear, however, whether this association is due to shared genetic factors. METHODS: We constructed a genetic risk score (GRS) using risk variants from 33 known independent T2D susceptibility loci and evaluated its relation to breast cancer risk using the data from two consortia, including 62,328 breast cancer patients and 83,817 controls of European ancestry. Unconditional logistic regression models were used to derive adjusted odds ratios (ORs) and 95 % confidence intervals (CIs) to measure the association of breast cancer risk with T2D GRS or T2D-associated genetic risk variants. Meta-analyses were conducted to obtain summary ORs across all studies. RESULTS: The T2D GRS was not found to be associated with breast cancer risk, overall, by menopausal status, or for estrogen receptor positive or negative breast cancer. Three T2D associated risk variants were individually associated with breast cancer risk after adjustment for multiple comparisons using the Bonferroni method (at p < 0.001), rs9939609 (FTO) (OR 0.94, 95 % CI = 0.92-0.95, p = 4.13E-13), rs7903146 (TCF7L2) (OR 1.04, 95 % CI = 1.02-1.06, p = 1.26E-05), and rs8042680 (PRC1) (OR 0.97, 95 % CI = 0.95-0.99, p = 8.05E-04). CONCLUSIONS: We have shown that several genetic risk variants were associated with the risk of both T2D and breast cancer. However, overall genetic susceptibility to T2D may not be related to breast cancer risk.
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- 2016
27. Experiencia con sacubitril/valsartán en una clínica de falla cardiaca
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Morales-Parra, Maria P., Salazar-Niño, Jaime F., Caycedo-González, Laura A., González-Torres, Diana V., Jaramillo-Jaramillo, Mónica, Buitrago-Sandoval, Andrés F., and González-Robledo, Gina
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- 2020
- Full Text
- View/download PDF
28. De la tension en el ejercicio de los roles de genero a la violencia conyugal como pauta relacional
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Alzate-Torres, Diana Marcela
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- 2020
- Full Text
- View/download PDF
29. Genetic variation in the immunosuppression pathway genes and breast cancer susceptibility: a pooled analysis of 42,510 cases and 40,577 controls from the Breast Cancer Association Consortium
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Lei, Jieping, Rudolph, Anja, Moysich, Kirsten B, Behrens, Sabine, Goode, Ellen L, Bolla, Manjeet K, Dennis, Joe, Dunning, Alison M, Easton, Douglas F, Wang, Qin, Benitez, Javier, Hopper, John L, Southey, Melissa C, Schmidt, Marjanka K, Broeks, Annegien, Fasching, Peter A, Haeberle, Lothar, Peto, Julian, dos-Santos-Silva, Isabel, Sawyer, Elinor J, Tomlinson, Ian, Burwinkel, Barbara, Marmé, Frederik, Guénel, Pascal, Truong, Thérèse, Bojesen, Stig E, Flyger, Henrik, Nielsen, Sune F, Nordestgaard, Børge G, González-Neira, Anna, Menéndez, Primitiva, Anton-Culver, Hoda, Neuhausen, Susan L, Brenner, Hermann, Arndt, Volker, Meindl, Alfons, Schmutzler, Rita K, Brauch, Hiltrud, Hamann, Ute, Nevanlinna, Heli, Fagerholm, Rainer, Dörk, Thilo, Bogdanova, Natalia V, Mannermaa, Arto, Hartikainen, Jaana M, Australian Ovarian Study Group, kConFab Investigators, Van Dijck, Laurien, Smeets, Ann, Flesch-Janys, Dieter, Eilber, Ursula, Radice, Paolo, Peterlongo, Paolo, Couch, Fergus J, Hallberg, Emily, Giles, Graham G, Milne, Roger L, Haiman, Christopher A, Schumacher, Fredrick, Simard, Jacques, Goldberg, Mark S, Kristensen, Vessela, Borresen-Dale, Anne-Lise, Zheng, Wei, Beeghly-Fadiel, Alicia, Winqvist, Robert, Grip, Mervi, Andrulis, Irene L, Glendon, Gord, García-Closas, Montserrat, Figueroa, Jonine, Czene, Kamila, Brand, Judith S, Darabi, Hatef, Eriksson, Mikael, Hall, Per, Li, Jingmei, Cox, Angela, Cross, Simon S, Pharoah, Paul DP, Shah, Mitul, Kabisch, Maria, Torres, Diana, Jakubowska, Anna, Lubinski, Jan, Ademuyiwa, Foluso, Ambrosone, Christine B, Swerdlow, Anthony, Jones, Michael, and Chang-Claude, Jenny
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Breast Cancer ,Genetics ,Human Genome ,Cancer ,2.1 Biological and endogenous factors ,Aetiology ,Breast Neoplasms ,Case-Control Studies ,Female ,Genetic Predisposition to Disease ,Humans ,Immune Tolerance ,Polymorphism ,Single Nucleotide ,Australian Ovarian Study Group ,kConFab Investigators ,Complementary and Alternative Medicine ,Paediatrics and Reproductive Medicine ,Genetics & Heredity - Abstract
Immunosuppression plays a pivotal role in assisting tumors to evade immune destruction and promoting tumor development. We hypothesized that genetic variation in the immunosuppression pathway genes may be implicated in breast cancer tumorigenesis. We included 42,510 female breast cancer cases and 40,577 controls of European ancestry from 37 studies in the Breast Cancer Association Consortium (2015) with available genotype data for 3595 single nucleotide polymorphisms (SNPs) in 133 candidate genes. Associations between genotyped SNPs and overall breast cancer risk, and secondarily according to estrogen receptor (ER) status, were assessed using multiple logistic regression models. Gene-level associations were assessed based on principal component analysis. Gene expression analyses were conducted using RNA sequencing level 3 data from The Cancer Genome Atlas for 989 breast tumor samples and 113 matched normal tissue samples. SNP rs1905339 (A>G) in the STAT3 region was associated with an increased breast cancer risk (per allele odds ratio 1.05, 95 % confidence interval 1.03-1.08; p value = 1.4 × 10(-6)). The association did not differ significantly by ER status. On the gene level, in addition to TGFBR2 and CCND1, IL5 and GM-CSF showed the strongest associations with overall breast cancer risk (p value = 1.0 × 10(-3) and 7.0 × 10(-3), respectively). Furthermore, STAT3 and IL5 but not GM-CSF were differentially expressed between breast tumor tissue and normal tissue (p value = 2.5 × 10(-3), 4.5 × 10(-4) and 0.63, respectively). Our data provide evidence that the immunosuppression pathway genes STAT3, IL5, and GM-CSF may be novel susceptibility loci for breast cancer in women of European ancestry.
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- 2016
30. Fine-Mapping of the 1p11.2 Breast Cancer Susceptibility Locus.
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Horne, Hisani N, Chung, Charles C, Zhang, Han, Yu, Kai, Prokunina-Olsson, Ludmila, Michailidou, Kyriaki, Bolla, Manjeet K, Wang, Qin, Dennis, Joe, Hopper, John L, Southey, Melissa C, Schmidt, Marjanka K, Broeks, Annegien, Muir, Kenneth, Lophatananon, Artitaya, Fasching, Peter A, Beckmann, Matthias W, Fletcher, Olivia, Johnson, Nichola, Sawyer, Elinor J, Tomlinson, Ian, Burwinkel, Barbara, Marme, Frederik, Guénel, Pascal, Truong, Thérèse, Bojesen, Stig E, Flyger, Henrik, Benitez, Javier, González-Neira, Anna, Anton-Culver, Hoda, Neuhausen, Susan L, Brenner, Hermann, Arndt, Volker, Meindl, Alfons, Schmutzler, Rita K, Brauch, Hiltrud, Hamann, Ute, Nevanlinna, Heli, Khan, Sofia, Matsuo, Keitaro, Iwata, Hiroji, Dörk, Thilo, Bogdanova, Natalia V, Lindblom, Annika, Margolin, Sara, Mannermaa, Arto, Kosma, Veli-Matti, Chenevix-Trench, Georgia, kConFab/AOCS Investigators, Wu, Anna H, Ven den Berg, David, Smeets, Ann, Zhao, Hui, Chang-Claude, Jenny, Rudolph, Anja, Radice, Paolo, Barile, Monica, Couch, Fergus J, Vachon, Celine, Giles, Graham G, Milne, Roger L, Haiman, Christopher A, Marchand, Loic Le, Goldberg, Mark S, Teo, Soo H, Taib, Nur AM, Kristensen, Vessela, Borresen-Dale, Anne-Lise, Zheng, Wei, Shrubsole, Martha, Winqvist, Robert, Jukkola-Vuorinen, Arja, Andrulis, Irene L, Knight, Julia A, Devilee, Peter, Seynaeve, Caroline, García-Closas, Montserrat, Czene, Kamila, Darabi, Hatef, Hollestelle, Antoinette, Martens, John WM, Li, Jingmei, Lu, Wei, Shu, Xiao-Ou, Cox, Angela, Cross, Simon S, Blot, William, Cai, Qiuyin, Shah, Mitul, Luccarini, Craig, Baynes, Caroline, Harrington, Patricia, Kang, Daehee, Choi, Ji-Yeob, Hartman, Mikael, Chia, Kee Seng, Kabisch, Maria, Torres, Diana, Jakubowska, Anna, and Lubinski, Jan
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kConFab/AOCS Investigators ,Chromosomes ,Human ,Pair 1 ,Humans ,Breast Neoplasms ,Genetic Predisposition to Disease ,Population Surveillance ,Risk Assessment ,Case-Control Studies ,Chromosome Mapping ,Computational Biology ,Gene Frequency ,Genotype ,Linkage Disequilibrium ,Polymorphism ,Single Nucleotide ,Alleles ,Quantitative Trait Loci ,Female ,Genetic Association Studies ,Neoplasm Grading ,General Science & Technology - Abstract
The Cancer Genetic Markers of Susceptibility genome-wide association study (GWAS) originally identified a single nucleotide polymorphism (SNP) rs11249433 at 1p11.2 associated with breast cancer risk. To fine-map this locus, we genotyped 92 SNPs in a 900kb region (120,505,799-121,481,132) flanking rs11249433 in 45,276 breast cancer cases and 48,998 controls of European, Asian and African ancestry from 50 studies in the Breast Cancer Association Consortium. Genotyping was done using iCOGS, a custom-built array. Due to the complicated nature of the region on chr1p11.2: 120,300,000-120,505,798, that lies near the centromere and contains seven duplicated genomic segments, we restricted analyses to 429 SNPs excluding the duplicated regions (42 genotyped and 387 imputed). Per-allelic associations with breast cancer risk were estimated using logistic regression models adjusting for study and ancestry-specific principal components. The strongest association observed was with the original identified index SNP rs11249433 (minor allele frequency (MAF) 0.402; per-allele odds ratio (OR) = 1.10, 95% confidence interval (CI) 1.08-1.13, P = 1.49 x 10-21). The association for rs11249433 was limited to ER-positive breast cancers (test for heterogeneity P≤8.41 x 10-5). Additional analyses by other tumor characteristics showed stronger associations with moderately/well differentiated tumors and tumors of lobular histology. Although no significant eQTL associations were observed, in silico analyses showed that rs11249433 was located in a region that is likely a weak enhancer/promoter. Fine-mapping analysis of the 1p11.2 breast cancer susceptibility locus confirms this region to be limited to risk to cancers that are ER-positive.
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- 2016
31. RAD51B in Familial Breast Cancer.
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Pelttari, Liisa M, Khan, Sofia, Vuorela, Mikko, Kiiski, Johanna I, Vilske, Sara, Nevanlinna, Viivi, Ranta, Salla, Schleutker, Johanna, Winqvist, Robert, Kallioniemi, Anne, Dörk, Thilo, Bogdanova, Natalia V, Figueroa, Jonine, Pharoah, Paul DP, Schmidt, Marjanka K, Dunning, Alison M, García-Closas, Montserrat, Bolla, Manjeet K, Dennis, Joe, Michailidou, Kyriaki, Wang, Qin, Hopper, John L, Southey, Melissa C, Rosenberg, Efraim H, Fasching, Peter A, Beckmann, Matthias W, Peto, Julian, Dos-Santos-Silva, Isabel, Sawyer, Elinor J, Tomlinson, Ian, Burwinkel, Barbara, Surowy, Harald, Guénel, Pascal, Truong, Thérèse, Bojesen, Stig E, Nordestgaard, Børge G, Benitez, Javier, González-Neira, Anna, Neuhausen, Susan L, Anton-Culver, Hoda, Brenner, Hermann, Arndt, Volker, Meindl, Alfons, Schmutzler, Rita K, Brauch, Hiltrud, Brüning, Thomas, Lindblom, Annika, Margolin, Sara, Mannermaa, Arto, Hartikainen, Jaana M, Chenevix-Trench, Georgia, kConFab/AOCS Investigators, Van Dyck, Laurien, Janssen, Hilde, Chang-Claude, Jenny, Rudolph, Anja, Radice, Paolo, Peterlongo, Paolo, Hallberg, Emily, Olson, Janet E, Giles, Graham G, Milne, Roger L, Haiman, Christopher A, Schumacher, Fredrick, Simard, Jacques, Dumont, Martine, Kristensen, Vessela, Borresen-Dale, Anne-Lise, Zheng, Wei, Beeghly-Fadiel, Alicia, Grip, Mervi, Andrulis, Irene L, Glendon, Gord, Devilee, Peter, Seynaeve, Caroline, Hooning, Maartje J, Collée, Margriet, Cox, Angela, Cross, Simon S, Shah, Mitul, Luben, Robert N, Hamann, Ute, Torres, Diana, Jakubowska, Anna, Lubinski, Jan, Couch, Fergus J, Yannoukakos, Drakoulis, Orr, Nick, Swerdlow, Anthony, Darabi, Hatef, Li, Jingmei, Czene, Kamila, Hall, Per, Easton, Douglas F, Mattson, Johanna, Blomqvist, Carl, Aittomäki, Kristiina, and Nevanlinna, Heli
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kConFab/AOCS Investigators ,Humans ,Breast Neoplasms ,Genetic Predisposition to Disease ,DNA-Binding Proteins ,Haplotypes ,Heterozygote ,Mutation ,Missense ,Polymorphism ,Single Nucleotide ,Middle Aged ,Finland ,Female ,Male ,Genotyping Techniques ,General Science & Technology - Abstract
Common variation on 14q24.1, close to RAD51B, has been associated with breast cancer: rs999737 and rs2588809 with the risk of female breast cancer and rs1314913 with the risk of male breast cancer. The aim of this study was to investigate the role of RAD51B variants in breast cancer predisposition, particularly in the context of familial breast cancer in Finland. We sequenced the coding region of RAD51B in 168 Finnish breast cancer patients from the Helsinki region for identification of possible recurrent founder mutations. In addition, we studied the known rs999737, rs2588809, and rs1314913 SNPs and RAD51B haplotypes in 44,791 breast cancer cases and 43,583 controls from 40 studies participating in the Breast Cancer Association Consortium (BCAC) that were genotyped on a custom chip (iCOGS). We identified one putatively pathogenic missense mutation c.541C>T among the Finnish cancer patients and subsequently genotyped the mutation in additional breast cancer cases (n = 5259) and population controls (n = 3586) from Finland and Belarus. No significant association with breast cancer risk was seen in the meta-analysis of the Finnish datasets or in the large BCAC dataset. The association with previously identified risk variants rs999737, rs2588809, and rs1314913 was replicated among all breast cancer cases and also among familial cases in the BCAC dataset. The most significant association was observed for the haplotype carrying the risk-alleles of all the three SNPs both among all cases (odds ratio (OR): 1.15, 95% confidence interval (CI): 1.11-1.19, P = 8.88 x 10-16) and among familial cases (OR: 1.24, 95% CI: 1.16-1.32, P = 6.19 x 10-11), compared to the haplotype with the respective protective alleles. Our results suggest that loss-of-function mutations in RAD51B are rare, but common variation at the RAD51B region is significantly associated with familial breast cancer risk.
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- 2016
32. A novel barcoded nanopore sequencing workflow of high-quality, full-length bacterial 16S amplicons for taxonomic annotation of bacterial isolates and complex microbial communities
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Howe, Adina, Howe, A ( Adina ), Dommann, Julian; https://orcid.org/0009-0008-2448-3795, Kerbl-Knapp, Jakob; https://orcid.org/0009-0001-5463-2762, Albertos Torres, Diana; https://orcid.org/0000-0002-0490-3974, Egli, Adrian; https://orcid.org/0000-0002-3564-8603, Keiser, Jennifer; https://orcid.org/0000-0003-0290-3521, Schneeberger, Pierre H H; https://orcid.org/0000-0002-8586-4937, Howe, Adina, Howe, A ( Adina ), Dommann, Julian; https://orcid.org/0009-0008-2448-3795, Kerbl-Knapp, Jakob; https://orcid.org/0009-0001-5463-2762, Albertos Torres, Diana; https://orcid.org/0000-0002-0490-3974, Egli, Adrian; https://orcid.org/0000-0002-3564-8603, Keiser, Jennifer; https://orcid.org/0000-0003-0290-3521, and Schneeberger, Pierre H H; https://orcid.org/0000-0002-8586-4937
- Abstract
Due to recent improvements, Nanopore sequencing has become a promising method for experiments relying on amplicon sequencing. We describe a flexible workflow to generate and annotate high-quality, full-length 16S rDNA amplicons. We evaluated it for two applications, namely, (i) identification of bacterial isolates and (ii) species-level profiling of microbial communities. We assessed the identification of single bacterial isolates by sequencing, using a set of barcoded full-length 16S rRNA gene primer pairs (pair A), on 47 isolates encompassing multiple genera and compared those results with matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS)-based identification. Species-level community profiling was tested with two sets of barcoded full-length 16S primer pairs (A and B) and compared to the results obtained with shotgun Illumina sequencing using 27 stool samples. We developed a Nextflow pipeline to retain high-quality reads and taxonomically annotate them. We found high agreement between our workflow and MALDI-TOF data for isolate identification (positive predictive value = 0.90, Cramér’s V = 0.857, and Theil’s U= 0.316). For species-level community profiling, we found strong correlations (r$_{s}$ > 0.6) of alpha diversity indices between the two primer sets and Illumina sequencing. At the community level, we found significant but small differences when comparing sequencing techniques. Finally, we found a moderate to strong correlation when comparing the relative abundances of individual species (average r$_{s}$ = 0.6 and 0.533 for primers A and B). Despite identified shortcomings, the proposed workflow enabled accurate identification of single bacterial isolates and prominent features in microbial communities, making it a worthwhile alternative to MALDI-TOF MS and Illumina sequencing. IMPORTANCE A quick, robust, simple, and cost-effective method to identify bacterial isolates and communities in each sample is indisp
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- 2024
33. Anti-SARS-CoV-2 total immunoglobulin and neutralising antibody responses in healthy blood donors throughout the COVID-19 pandemic: a longitudinal observational study
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Gütlin, Yukino, Albertos Torres, Diana, Gensch, Alexander, Schlotterbeck, Ann-Kathrin, Stöger, Laurent, Heller, Stefanie, Infanti, Laura, Barut, Güliz Tuba, Thiel, Volker; https://orcid.org/0000-0002-5783-0887, Leuzinger, Karoline; https://orcid.org/0000-0002-5654-9356, Hirsch, Hans H; https://orcid.org/0000-0003-0883-0423, Buser, Andreas, Egli, Adrian; https://orcid.org/0000-0002-3564-8603, Gütlin, Yukino, Albertos Torres, Diana, Gensch, Alexander, Schlotterbeck, Ann-Kathrin, Stöger, Laurent, Heller, Stefanie, Infanti, Laura, Barut, Güliz Tuba, Thiel, Volker; https://orcid.org/0000-0002-5783-0887, Leuzinger, Karoline; https://orcid.org/0000-0002-5654-9356, Hirsch, Hans H; https://orcid.org/0000-0003-0883-0423, Buser, Andreas, and Egli, Adrian; https://orcid.org/0000-0002-3564-8603
- Abstract
INTRODUCTION: Quantifying antibodies against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) and neutralising antibodies may help to understand protection at the individual and population levels. Determination of neutralising antibodies using classical virus neutralisation tests (VNT) is considered the gold standard, but they are costly and time-intensive. Enzyme-linked immunosorbent assay (ELISA)-based surrogate VNTs (sVNT) or anti-SARS-CoV-2 spike protein receptor binding domain immunoglobulins (anti-S-RBD Ig) may be suitable alternatives to VNTs. We aimed to (a) explore the correlations between anti-S-RBD Ig, VNT, and sVNT measurements and (b) describe humoral immunity against SARS-CoV-2 after vaccination, natural infection, and vaccine breakthrough infection in healthy blood donors. METHODS: We measured total anti-SARS-CoV-2 Ig in 5714 serum samples from 2748 healthy individuals visiting the Swiss Red Cross Blood Donation Centre in Basel from 03/2020 to 04/2022. We used the Elecsys® Anti-SARS-CoV-2 immunoassay (Roche) against the N- and S-receptor binding domain (RBD) proteins. In a subset of 548 samples from 123 donors, we conducted sVNTs against the Wuhan wild-type SARS-CoV-2 (SARS-CoV-2 Neutralizing Antibodies Detection Kit; Adipogen™). In 100 samples from 40 donors, we correlated sVNT and VNTs against the wild-type (D614G WU1) virus. Surveys were sent to the blood donors to collect data on their SARS-CoV-2 infection and vaccination status. Using this data, donors were categorised as “vaccination only”, “infection before vaccination”, “post-vaccine breakthrough infection”, and “natural infection only”. RESULTS: Our longitudinal observation study cohort consisted of 50.7% males with a median age of 31 years (range 18–75 y). Anti-SARS-CoV-2 N protein positivity rates per month indicate 57.1% (88/154) of the cohort was infected up to 04/2022. No differences in seropositivity were found between sexes, age groups, blood types (AB0 or RhD), and cytomeg
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- 2024
34. Predominant technical actions used in the European judo championship
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Batista, Marco Alexandre da Silva, da Silva, Carlos Manuel Marques, Torres, Diana, Conceiçao, Ana, Borrego, Carla, Louro, Hugo, Batista, Marco Alexandre da Silva, da Silva, Carlos Manuel Marques, Torres, Diana, Conceiçao, Ana, Borrego, Carla, and Louro, Hugo
- Abstract
Judo is an Olympic combat sport that is divided into male and female weight categories. Each weight category implies significant differences in technical and strategic dimensions, as well as physiological, performance, and body composition among com-petitors. This study aimed to determine the technical actions predominance used by judokas in the European Judo Championship 2021. We observed 398 judo combats, in the various weight categories male and female, disputed in the European Judo Championship 2021. It was used an observation system in accordance with the classification of judo techniques proposed by Kodokan. An observation system was used according to the Kodokan classification of judo techniques. In Nage-Waza combat, there was a predominance leg technique (Ashi-Waza), arm technique (Te-Waza), hip technique (Koshi-Waza), side sacrifice techniques (Yoko-Sutemi-Waza) and frontal sacri-fice techniques (Ma-Sutemi-Waza). When we focused our observation on the effectiveness of applied techniques, we observed more techniques scored with Ippon than Wazari. We can also observe that Shido was the significantly more recurrent punishment during male combats.
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- 2024
35. El garantismo y la filosofía del derecho
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Ramírez Torres, Diana Gissella and Ramírez Torres, Diana Gissella
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El mundo de la filosofía implica pasearse por los principios generales que dan vida al conocimiento de la realidad circundante, es buscar el sentido que impulsa las acciones humanas, es vincular la filosofía con el derecho, es profundizar en esas acciones del hombre, puesto que la filosofía del derecho implica penetrar en el estudio del fenómeno jurídico, desde lo abstracto, buscar una visión integral del mismo; es decir, incluir aspectos como lo normativo, lo institucional pero también, lo social y lo moral. Hablar de garantismo es entenderlo como un modelo que asegura el cumplimiento de los derechos establecidos en el ordenamiento jurídico, significando el ideal de legalidad y legitimidad imperante en la sociedad, logrando la observancia de los derechos fundamentales. El artículo tiene como objetivo analizar el Garantismo y la filosofía del Derecho. Se apoyó en una investigación documental. Se concluyó que el garantismo como forma de ideología jurídica, orientada a la representación, comprensión, interpretación y explicación del derecho, alcanza una fuerte conexión con la filosofía del derecho al tener esta también una concepción de análisis profundo del derecho, para con ello brindar nociones a las distintas disciplinas jurídicas y así lograr una mejor comprensión y aplicación del derecho.
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- 2024
36. Los mecanismos de solución de controversias en los derechos humanos
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Ramírez Torres, Diana Gissella and Ramírez Torres, Diana Gissella
- Abstract
Los mecanismos de solución de controversias, constituyen una serie de procedimientos, que permiten que los ciudadanos resuelvan sus divergencias, sin la participación de un órgano jurisdiccional. Pueden mencionarse dentro de estos, la negociación, mediación, conciliación y el arbitraje. Ahora bien, ubicarse en los derechos humanos, indica, que son prerrogativas, de la persona humana, las cuales toda autoridad tiene la obligación de respetar, proteger y defender. Dentro de estos derechos se encuentran el de la vida, la libertad, la salud, la educación, entre otros; sin embargo, es fundamental mencionar el derecho al acceso a la justicia, englobando esto, el hecho que toda persona tiene el derecho que se le imparta justicia prontamente, sin dilaciones indebidas, sin discriminaciones, respetando los lapsos y términos estipulados por las leyes. Esta atención especial al acceso a la justicia, incluye en algunos casos el empleo de los denominados mecanismos alternativos de solución de controversias o medios alternativos de resolución de conflictos, como una forma de solventar divergencias de manera más rápida, económica, obteniendo resultados útiles y estables. Partiendo de lo anteriormente señalado, el presente artículo tuvo como propósito analizar los mecanismos de solución de controversias en los derechos humanos. Se empleó para el desarrollo de la investigación una metodología de tipo documental, de nivel analítico. Una vez realizada la revisión de diversos materiales escritos se concluyó que los mecanismos de solución de conflictos emergen al margen de los tribunales, sin embargo, ofrecen la posibilidad de resolver conflictos, sin los traumas que genera un proceso judicial.
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- 2024
37. UCI EyeMobile Exam Findings from School Children Following on-Site Screening
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Hong,John, Choi,Elliot, Suh,Susie, Bui,Joseph, Storch,Annabelle, Walker,Kimberly, Shahraki,Kourosh, Yanez,Carolina, Torres,Diana, Espinoza,Jennifer, Molina,Iliana, Suh,Donny, Hong,John, Choi,Elliot, Suh,Susie, Bui,Joseph, Storch,Annabelle, Walker,Kimberly, Shahraki,Kourosh, Yanez,Carolina, Torres,Diana, Espinoza,Jennifer, Molina,Iliana, and Suh,Donny
- Abstract
John D Hong,1 Elliot H Choi,1 Susie Suh,1 Joseph H Bui,1 Annabelle M Storch,1 Kimberly R Walker,1 Kourosh Shahraki,1 Carolina Yanez,1 Diana Torres,1 Jennifer Espinoza,1 Iliana Molina,2,* Donny W Suh1,* 1Gavin Herbert Eye Institute, Department of Ophthalmology, University of California, Irvine, CA, USA; 2Shiley Eye Institute, Department of Ophthalmology, University of California, San Diego, CA, USA*These authors contributed equally to this workCorrespondence: Donny W Suh, Gavin Herbert Eye Institute, Department of Ophthalmology, University of California, Irvine, 850 Health Sciences Road, Irvine, CA, 92697, USA, Tel +1 949 824-4122, Email donnys@hs.uci.edu Iliana Molina, Shiley Eye Institute, Department of Ophthalmology, University of California, San Diego, 9415 Campus Point Dr, San Diego, CA, 92037, USA, Tel +1 858 822-2585, Email imolina@health.ucsd.eduPurpose: Uncorrected refractive errors (REs) and amblyopia can lead to visual impairment with deleterious effects on quality of life and academic performance. Early detection and treatment by community vision care programs, such as the UCI EyeMobile for Children, can aid in addressing preventable vision loss.Methods: A total of 5074 children between the ages of 3 and 10 years were screened at 153 locations, including preschools, head start programs, and elementary schools within Orange County (OC), California (CA). Subsequently, 1024 children presented for comprehensive eye examinations. A retrospective analysis of all examined children was conducted, determining the frequency and severity of REs and amblyopia and the spectacle prescription rate by age. Propensity score matching analysis evaluated the effect of median household income on RE and amblyopia frequency.Results: Among those who failed initial screening and were subsequently examined, significant rates of REs and amblyopia were detected: myopia (24.4%), hyperopia (35.4%), astigmatism (71.8%), anisometropia (8.9%), amblyopia (7.0%), an
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- 2024
38. Association of type and location of BRCA1 and BRCA2 mutations with risk of breast and ovarian cancer.
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Rebbeck, Timothy R, Mitra, Nandita, Wan, Fei, Sinilnikova, Olga M, Healey, Sue, McGuffog, Lesley, Mazoyer, Sylvie, Chenevix-Trench, Georgia, Easton, Douglas F, Antoniou, Antonis C, Nathanson, Katherine L, CIMBA Consortium, Laitman, Yael, Kushnir, Anya, Paluch-Shimon, Shani, Berger, Raanan, Zidan, Jamal, Friedman, Eitan, Ehrencrona, Hans, Stenmark-Askmalm, Marie, Einbeigi, Zakaria, Loman, Niklas, Harbst, Katja, Rantala, Johanna, Melin, Beatrice, Huo, Dezheng, Olopade, Olufunmilayo I, Seldon, Joyce, Ganz, Patricia A, Nussbaum, Robert L, Chan, Salina B, Odunsi, Kunle, Gayther, Simon A, Domchek, Susan M, Arun, Banu K, Lu, Karen H, Mitchell, Gillian, Karlan, Beth Y, Walsh, Christine, Lester, Jenny, Godwin, Andrew K, Pathak, Harsh, Ross, Eric, Daly, Mary B, Whittemore, Alice S, John, Esther M, Miron, Alexander, Terry, Mary Beth, Chung, Wendy K, Goldgar, David E, Buys, Saundra S, Janavicius, Ramunas, Tihomirova, Laima, Tung, Nadine, Dorfling, Cecilia M, van Rensburg, Elizabeth J, Steele, Linda, Neuhausen, Susan L, Ding, Yuan Chun, Ejlertsen, Bent, Gerdes, Anne-Marie, Hansen, Thomas VO, Ramón y Cajal, Teresa, Osorio, Ana, Benitez, Javier, Godino, Javier, Tejada, Maria-Isabel, Duran, Mercedes, Weitzel, Jeffrey N, Bobolis, Kristie A, Sand, Sharon R, Fontaine, Annette, Savarese, Antonella, Pasini, Barbara, Peissel, Bernard, Bonanni, Bernardo, Zaffaroni, Daniela, Vignolo-Lutati, Francesca, Scuvera, Giulietta, Giannini, Giuseppe, Bernard, Loris, Genuardi, Maurizio, Radice, Paolo, Dolcetti, Riccardo, Manoukian, Siranoush, Pensotti, Valeria, Gismondi, Viviana, Yannoukakos, Drakoulis, Fostira, Florentia, Garber, Judy, Torres, Diana, Rashid, Muhammad Usman, Hamann, Ute, Peock, Susan, Frost, Debra, Platte, Radka, Evans, D Gareth, Eeles, Rosalind, Davidson, Rosemarie, and Eccles, Diana
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CIMBA Consortium ,Humans ,Breast Neoplasms ,Ovarian Neoplasms ,Genetic Predisposition to Disease ,Nucleotides ,Risk Factors ,Age of Onset ,Heterozygote ,Mutation ,Genes ,BRCA1 ,Genes ,BRCA2 ,Adult ,Middle Aged ,Female ,Cancer ,Prevention ,Rare Diseases ,Breast Cancer ,Clinical Research ,Ovarian Cancer ,General & Internal Medicine ,Medical and Health Sciences - Abstract
ImportanceLimited information about the relationship between specific mutations in BRCA1 or BRCA2 (BRCA1/2) and cancer risk exists.ObjectiveTo identify mutation-specific cancer risks for carriers of BRCA1/2.Design, setting, and participantsObservational study of women who were ascertained between 1937 and 2011 (median, 1999) and found to carry disease-associated BRCA1 or BRCA2 mutations. The international sample comprised 19,581 carriers of BRCA1 mutations and 11,900 carriers of BRCA2 mutations from 55 centers in 33 countries on 6 continents. We estimated hazard ratios for breast and ovarian cancer based on mutation type, function, and nucleotide position. We also estimated RHR, the ratio of breast vs ovarian cancer hazard ratios. A value of RHR greater than 1 indicated elevated breast cancer risk; a value of RHR less than 1 indicated elevated ovarian cancer risk.ExposuresMutations of BRCA1 or BRCA2.Main outcomes and measuresBreast and ovarian cancer risks.ResultsAmong BRCA1 mutation carriers, 9052 women (46%) were diagnosed with breast cancer, 2317 (12%) with ovarian cancer, 1041 (5%) with breast and ovarian cancer, and 7171 (37%) without cancer. Among BRCA2 mutation carriers, 6180 women (52%) were diagnosed with breast cancer, 682 (6%) with ovarian cancer, 272 (2%) with breast and ovarian cancer, and 4766 (40%) without cancer. In BRCA1, we identified 3 breast cancer cluster regions (BCCRs) located at c.179 to c.505 (BCCR1; RHR = 1.46; 95% CI, 1.22-1.74; P = 2 × 10(-6)), c.4328 to c.4945 (BCCR2; RHR = 1.34; 95% CI, 1.01-1.78; P = .04), and c. 5261 to c.5563 (BCCR2', RHR = 1.38; 95% CI, 1.22-1.55; P = 6 × 10(-9)). We also identified an ovarian cancer cluster region (OCCR) from c.1380 to c.4062 (approximately exon 11) with RHR = 0.62 (95% CI, 0.56-0.70; P = 9 × 10(-17)). In BRCA2, we observed multiple BCCRs spanning c.1 to c.596 (BCCR1; RHR = 1.71; 95% CI, 1.06-2.78; P = .03), c.772 to c.1806 (BCCR1'; RHR = 1.63; 95% CI, 1.10-2.40; P = .01), and c.7394 to c.8904 (BCCR2; RHR = 2.31; 95% CI, 1.69-3.16; P = .00002). We also identified 3 OCCRs: the first (OCCR1) spanned c.3249 to c.5681 that was adjacent to c.5946delT (6174delT; RHR = 0.51; 95% CI, 0.44-0.60; P = 6 × 10(-17)). The second OCCR spanned c.6645 to c.7471 (OCCR2; RHR = 0.57; 95% CI, 0.41-0.80; P = .001). Mutations conferring nonsense-mediated decay were associated with differential breast or ovarian cancer risks and an earlier age of breast cancer diagnosis for both BRCA1 and BRCA2 mutation carriers.Conclusions and relevanceBreast and ovarian cancer risks varied by type and location of BRCA1/2 mutations. With appropriate validation, these data may have implications for risk assessment and cancer prevention decision making for carriers of BRCA1 and BRCA2 mutations.
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- 2015
39. Colistin resistance in Gram-negative bacteria analysed by five phenotypic assays and inference of the underlying genomic mechanisms
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Torres, Diana Albertos, Seth-Smith, Helena M. B., Joosse, Nicole, Lang, Claudia, Dubuis, Olivier, Nüesch-Inderbinen, Magdalena, Hinic, Vladimira, and Egli, Adrian
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- 2021
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40. A case-only study to identify genetic modifiers of breast cancer risk for BRCA1/BRCA2 mutation carriers
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Coignard, Juliette, Lush, Michael, Beesley, Jonathan, O’Mara, Tracy A., Dennis, Joe, Tyrer, Jonathan P., Barnes, Daniel R., McGuffog, Lesley, Leslie, Goska, Bolla, Manjeet K., Adank, Muriel A., Agata, Simona, Ahearn, Thomas, Aittomäki, Kristiina, Andrulis, Irene L., Anton-Culver, Hoda, Arndt, Volker, Arnold, Norbert, Aronson, Kristan J., Arun, Banu K., Augustinsson, Annelie, Azzollini, Jacopo, Barrowdale, Daniel, Baynes, Caroline, Becher, Heiko, Bermisheva, Marina, Bernstein, Leslie, Białkowska, Katarzyna, Blomqvist, Carl, Bojesen, Stig E., Bonanni, Bernardo, Borg, Ake, Brauch, Hiltrud, Brenner, Hermann, Burwinkel, Barbara, Buys, Saundra S., Caldés, Trinidad, Caligo, Maria A., Campa, Daniele, Carter, Brian D., Castelao, Jose E., Chang-Claude, Jenny, Chanock, Stephen J., Chung, Wendy K., Claes, Kathleen B. M., Clarke, Christine L., Collée, J. Margriet, Conroy, Don M., Czene, Kamila, Daly, Mary B., Devilee, Peter, Diez, Orland, Ding, Yuan Chun, Domchek, Susan M., Dörk, Thilo, dos-Santos-Silva, Isabel, Dunning, Alison M., Dwek, Miriam, Eccles, Diana M., Eliassen, A. Heather, Engel, Christoph, Eriksson, Mikael, Evans, D. Gareth, Fasching, Peter A., Flyger, Henrik, Fostira, Florentia, Friedman, Eitan, Fritschi, Lin, Frost, Debra, Gago-Dominguez, Manuela, Gapstur, Susan M., Garber, Judy, Garcia-Barberan, Vanesa, García-Closas, Montserrat, García-Sáenz, José A., Gaudet, Mia M., Gayther, Simon A., Gehrig, Andrea, Georgoulias, Vassilios, Giles, Graham G., Godwin, Andrew K., Goldberg, Mark S., Goldgar, David E., González-Neira, Anna, Greene, Mark H., Guénel, Pascal, Haeberle, Lothar, Hahnen, Eric, Haiman, Christopher A., Håkansson, Niclas, Hall, Per, Hamann, Ute, Harrington, Patricia A., Hart, Steven N., He, Wei, Hogervorst, Frans B. L., Hollestelle, Antoinette, Hopper, John L., Horcasitas, Darling J., Hulick, Peter J., Hunter, David J., Imyanitov, Evgeny N., Jager, Agnes, Jakubowska, Anna, James, Paul A., Jensen, Uffe Birk, John, Esther M., Jones, Michael E., Kaaks, Rudolf, Kapoor, Pooja Middha, Karlan, Beth Y., Keeman, Renske, Khusnutdinova, Elza, Kiiski, Johanna I., Ko, Yon-Dschun, Kosma, Veli-Matti, Kraft, Peter, Kurian, Allison W., Laitman, Yael, Lambrechts, Diether, Le Marchand, Loic, Lester, Jenny, Lesueur, Fabienne, Lindstrom, Tricia, Lopez-Fernández, Adria, Loud, Jennifer T., Luccarini, Craig, Mannermaa, Arto, Manoukian, Siranoush, Margolin, Sara, Martens, John W. M., Mebirouk, Noura, Meindl, Alfons, Miller, Austin, Milne, Roger L., Montagna, Marco, Nathanson, Katherine L., Neuhausen, Susan L., Nevanlinna, Heli, Nielsen, Finn C., O’Brien, Katie M., Olopade, Olufunmilayo I., Olson, Janet E., Olsson, Håkan, Osorio, Ana, Ottini, Laura, Park-Simon, Tjoung-Won, Parsons, Michael T., Pedersen, Inge Sokilde, Peshkin, Beth, Peterlongo, Paolo, Peto, Julian, Pharoah, Paul D. P., Phillips, Kelly-Anne, Polley, Eric C., Poppe, Bruce, Presneau, Nadege, Pujana, Miquel Angel, Punie, Kevin, Radice, Paolo, Rantala, Johanna, Rashid, Muhammad U., Rennert, Gad, Rennert, Hedy S., Robson, Mark, Romero, Atocha, Rossing, Maria, Saloustros, Emmanouil, Sandler, Dale P., Santella, Regina, Scheuner, Maren T., Schmidt, Marjanka K., Schmidt, Gunnar, Scott, Christopher, Sharma, Priyanka, Soucy, Penny, Southey, Melissa C., Spinelli, John J., Steinsnyder, Zoe, Stone, Jennifer, Stoppa-Lyonnet, Dominique, Swerdlow, Anthony, Tamimi, Rulla M., Tapper, William J., Taylor, Jack A., Terry, Mary Beth, Teulé, Alex, Thull, Darcy L., Tischkowitz, Marc, Toland, Amanda E., Torres, Diana, Trainer, Alison H., Truong, Thérèse, Tung, Nadine, Vachon, Celine M., Vega, Ana, Vijai, Joseph, Wang, Qin, Wappenschmidt, Barbara, Weinberg, Clarice R., Weitzel, Jeffrey N., Wendt, Camilla, Wolk, Alicja, Yadav, Siddhartha, Yang, Xiaohong R., Yannoukakos, Drakoulis, Zheng, Wei, Ziogas, Argyrios, Zorn, Kristin K., Park, Sue K., Thomassen, Mads, Offit, Kenneth, Schmutzler, Rita K., Couch, Fergus J., Simard, Jacques, Chenevix-Trench, Georgia, Easton, Douglas F., Andrieu, Nadine, and Antoniou, Antonis C.
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- 2021
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41. Tendencias sobre el diseño, implementación y uso de los lenguajes documentales especializados en centros de documentación de Bogotá
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Castillo Daza, Miguel Stiwar and Rozo Torres, Diana Lorena
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BA. Use and impact of information. ,DD. Academic libraries. ,DH. Special libraries. ,FJ. Knowledge management ,IA. Cataloging, bibliographic control. ,IB. Content analysis (A and I, class.) ,IC. Index languages, processes and schemes. ,ID. Knowledge representation. - Abstract
This research work carries out a documentary investigation on the trends of documentary languages in the Colombian panorama, from the perspective of different authors specialized in the investigation of documentary languages and the discernment about the future of these tools in the face of technological advances. and the constant growth of information. It seeks to analyze the perspective of information professionals in the design, use and implementation of documentary languages in order to develop a matrix of documentary language trends and the impact it can have on the organization and retrieval of information through based on good practices in response to an identified skill or need. This will allow professionals focused on the area of information analysis, description, cataloging and other related processes to see documentary languages as an integral component of their operations and these can be complemented with the technological advances that have been developed to solve the problem. problems of organization and recovery of knowledge.
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- 2022
42. Aspectos biotecnológicos en la propagación in vitro de magnoliáceas/Biotechnological aspects in the in vitro propagation of magnoliaceae
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Torres, Diana Milena Avendaño, Sandoval, Elberth Hernando Pinzón, and Cely, Pablo Antonio Serrano
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- 2022
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43. Correction: Polygenic risk modeling for prediction of epithelial ovarian cancer risk
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Dareng, Eileen O., Tyrer, Jonathan P., Barnes, Daniel R., Jones, Michelle R., Yang, Xin, Aben, Katja K. H., Adank, Muriel A., Agata, Simona, Andrulis, Irene L., Anton-Culver, Hoda, Antonenkova, Natalia N., Aravantinos, Gerasimos, Arun, Banu K., Augustinsson, Annelie, Balmaña, Judith, Bandera, Elisa V., Barkardottir, Rosa B., Barrowdale, Daniel, Beckmann, Matthias W., Beeghly-Fadiel, Alicia, Benitez, Javier, Bermisheva, Marina, Bernardini, Marcus Q., Bjorge, Line, Black, Amanda, Bogdanova, Natalia V., Bonanni, Bernardo, Borg, Ake, Brenton, James D., Budzilowska, Agnieszka, Butzow, Ralf, Buys, Saundra S., Cai, Hui, Caligo, Maria A., Campbell, Ian, Cannioto, Rikki, Cassingham, Hayley, Chang-Claude, Jenny, Chanock, Stephen J., Chen, Kexin, Chiew, Yoke-Eng, Chung, Wendy K., Claes, Kathleen B. M., Colonna, Sarah, Cook, Linda S., Couch, Fergus J., Daly, Mary B., Dao, Fanny, Davies, Eleanor, de la Hoya, Miguel, de Putter, Robin, Dennis, Joe, DePersia, Allison, Devilee, Peter, Diez, Orland, Ding, Yuan Chun, Doherty, Jennifer A., Domchek, Susan M., Dörk, Thilo, du Bois, Andreas, Dürst, Matthias, Eccles, Diana M., Eliassen, Heather A., Engel, Christoph, Evans, Gareth D., Fasching, Peter A., Flanagan, James M., Fortner, Renée T., Machackova, Eva, Friedman, Eitan, Ganz, Patricia A., Garber, Judy, Gensini, Francesca, Giles, Graham G., Glendon, Gord, Godwin, Andrew K., Goodman, Marc T., Greene, Mark H., Gronwald, Jacek, Hahnen, Eric, Haiman, Christopher A., Håkansson, Niclas, Hamann, Ute, Hansen, Thomas V. O., Harris, Holly R., Hartman, Mikael, Heitz, Florian, Hildebrandt, Michelle A. T., Høgdall, Estrid, Høgdall, Claus K., Hopper, John L., Huang, Ruea-Yea, Huff, Chad, Hulick, Peter J., Huntsman, David G., Imyanitov, Evgeny N., Isaacs, Claudine, Jakubowska, Anna, James, Paul A., Janavicius, Ramunas, Jensen, Allan, Johannsson, Oskar Th., John, Esther M., Jones, Michael E., Kang, Daehee, Karlan, Beth Y., Karnezis, Anthony, Kelemen, Linda E., Khusnutdinova, Elza, Kiemeney, Lambertus A., Kim, Byoung-Gie, Kjaer, Susanne K., Komenaka, Ian, Kupryjanczyk, Jolanta, Kurian, Allison W., Kwong, Ava, Lambrechts, Diether, Larson, Melissa C., Lazaro, Conxi, Le, Nhu D., Leslie, Goska, Lester, Jenny, Lesueur, Fabienne, Levine, Douglas A., Li, Lian, Li, Jingmei, Loud, Jennifer T., Lu, Karen H., Lubiński, Jan, Mai, Phuong L., Manoukian, Siranoush, Marks, Jeffrey R., Matsuno, Rayna Kim, Matsuo, Keitaro, May, Taymaa, McGuffog, Lesley, McLaughlin, John R., McNeish, Iain A., Mebirouk, Noura, Menon, Usha, Miller, Austin, Milne, Roger L., Minlikeeva, Albina, Modugno, Francesmary, Montagna, Marco, Moysich, Kirsten B., Munro, Elizabeth, Nathanson, Katherine L., Neuhausen, Susan L., Nevanlinna, Heli, Yie, Joanne Ngeow Yuen, Nielsen, Henriette Roed, Nielsen, Finn C., Nikitina-Zake, Liene, Odunsi, Kunle, Offit, Kenneth, Olah, Edith, Olbrecht, Siel, Olopade, Olufunmilayo I., Olson, Sara H., Olsson, Håkan, Osorio, Ana, Papi, Laura, Park, Sue K., Parsons, Michael T., Pathak, Harsha, Pedersen, Inge Sokilde, Peixoto, Ana, Pejovic, Tanja, Perez-Segura, Pedro, Permuth, Jennifer B., Peshkin, Beth, Peterlongo, Paolo, Piskorz, Anna, Prokofyeva, Darya, Radice, Paolo, Rantala, Johanna, Riggan, Marjorie J., Risch, Harvey A., Rodriguez-Antona, Cristina, Ross, Eric, Rossing, Mary Anne, Runnebaum, Ingo, Sandler, Dale P., Santamariña, Marta, Soucy, Penny, Schmutzler, Rita K., Setiawan, V. Wendy, Shan, Kang, Sieh, Weiva, Simard, Jacques, Singer, Christian F., Sokolenko, Anna P., Song, Honglin, Southey, Melissa C., Steed, Helen, Stoppa-Lyonnet, Dominique, Sutphen, Rebecca, Swerdlow, Anthony J., Tan, Yen Yen, Teixeira, Manuel R., Teo, Soo Hwang, Terry, Kathryn L., Terry, Mary Beth, Thomassen, Mads, Thompson, Pamela J., Thomsen, Liv Cecilie Vestrheim, Thull, Darcy L., Tischkowitz, Marc, Titus, Linda, Toland, Amanda E., Torres, Diana, Trabert, Britton, Travis, Ruth, Tung, Nadine, Tworoger, Shelley S., Valen, Ellen, van Altena, Anne M., van der Hout, Annemieke H., Van Nieuwenhuysen, Els, van Rensburg, Elizabeth J., Vega, Ana, Edwards, Digna Velez, Vierkant, Robert A., Wang, Frances, Wappenschmidt, Barbara, Webb, Penelope M., Weinberg, Clarice R., Weitzel, Jeffrey N., Wentzensen, Nicolas, White, Emily, Whittemore, Alice S., Winham, Stacey J., Wolk, Alicja, Woo, Yin-Ling, Wu, Anna H., Yan, Li, Yannoukakos, Drakoulis, Zavaglia, Katia M., Zheng, Wei, Ziogas, Argyrios, Zorn, Kristin K., Kleibl, Zdenek, Easton, Douglas, Lawrenson, Kate, DeFazio, Anna, Sellers, Thomas A., Ramus, Susan J., Pearce, Celeste L., Monteiro, Alvaro N., Cunningham, Julie, Goode, Ellen L., Schildkraut, Joellen M., Berchuck, Andrew, Chenevix-Trench, Georgia, Gayther, Simon A., Antoniou, Antonis C., and Pharoah, Paul D. P.
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- 2022
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44. Discovery of dual-action phenolic 4-arylidene-isoquinolinones with antioxidant and α-glucosidase inhibition activities
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Hernández-Vázquez, Eduardo, primary, Martínez-Caballero, Siseth, additional, Aldana-Torres, Diana, additional, Estrada-Soto, Samuel, additional, and Nieto-Camacho, Antonio, additional
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- 2024
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45. Genome-wide association study identifies 25 known breast cancer susceptibility loci as risk factors for triple-negative breast cancer.
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Purrington, Kristen, Slager, Susan, Eccles, Diana, Yannoukakos, Drakoulis, Fasching, Peter, Miron, Penelope, Carpenter, Jane, Chang-Claude, Jenny, Martin, Nicholas, Montgomery, Grant, Kristensen, Vessela, Goodfellow, Paul, Tapper, William, Rafiq, Sajjad, Gerty, Susan, Durcan, Lorraine, Konstantopoulou, Irene, Fostira, Florentia, Vratimos, Athanassios, Apostolou, Paraskevi, Konstanta, Irene, Kotoula, Vassiliki, Lakis, Sotiris, Dimopoulos, Meletios, Skarlos, Dimosthenis, Pectasides, Dimitrios, Fountzilas, George, Beckmann, Matthias, Hein, Alexander, Ruebner, Matthias, Ekici, Arif, Hartmann, Arndt, Schulz-Wendtland, Ruediger, Renner, Stefan, Janni, Wolfgang, Rack, Brigitte, Scholz, Christoph, Neugebauer, Julia, Andergassen, Ulrich, Lux, Michael, Haeberle, Lothar, Clarke, Christine, Pathmanathan, Nirmala, Rudolph, Anja, Flesch-Janys, Dieter, Nickels, Stefan, Olson, Janet, Ingle, James, Olswold, Curtis, Slettedahl, Seth, Eckel-Passow, Jeanette, Anderson, S, Visscher, Daniel, Cafourek, Victoria, Sicotte, Hugues, Prodduturi, Naresh, Weiderpass, Elisabete, Bernstein, Leslie, Ivanovich, Jennifer, Giles, Graham, Baglietto, Laura, Southey, Melissa, Kosma, Veli-Matti, Fischer, Hans-Peter, Reed, Malcom, Cross, Simon, Deming-Halverson, Sandra, Shrubsole, Martha, Cai, Qiuyin, Shu, Xiao-Ou, Daly, Mary, Weaver, Joellen, Ross, Eric, Klemp, Jennifer, Sharma, Priyanka, Torres, Diana, Rüdiger, Thomas, Wölfing, Heidrun, Ulmer, Hans-Ulrich, Försti, Asta, Khoury, Thaer, Kumar, Shicha, Pilarski, Robert, Shapiro, Charles, Greco, Dario, Heikkilä, Päivi, Aittomäki, Kristiina, Blomqvist, Carl, Irwanto, Astrid, Liu, Jianjun, Pankratz, Vernon, Wang, Xianshu, Severi, Gianluca, Mannermaa, Arto, Easton, Douglas, Hall, Per, Brauch, Hiltrud, Cox, Angela, Zheng, Wei, and Godwin, Andrew
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Adult ,Aged ,Aged ,80 and over ,Case-Control Studies ,Chromosomes ,Human ,Pair 19 ,Estrogen Receptor alpha ,Female ,Genetic Predisposition to Disease ,Genome-Wide Association Study ,Humans ,Middle Aged ,Polymorphism ,Single Nucleotide ,Quantitative Trait Loci ,Triple Negative Breast Neoplasms ,Young Adult - Abstract
Triple-negative (TN) breast cancer is an aggressive subtype of breast cancer associated with a unique set of epidemiologic and genetic risk factors. We conducted a two-stage genome-wide association study of TN breast cancer (stage 1: 1529 TN cases, 3399 controls; stage 2: 2148 cases, 1309 controls) to identify loci that influence TN breast cancer risk. Variants in the 19p13.1 and PTHLH loci showed genome-wide significant associations (P < 5 × 10(-) (8)) in stage 1 and 2 combined. Results also suggested a substantial enrichment of significantly associated variants among the single nucleotide polymorphisms (SNPs) analyzed in stage 2. Variants from 25 of 74 known breast cancer susceptibility loci were also associated with risk of TN breast cancer (P < 0.05). Associations with TN breast cancer were confirmed for 10 loci (LGR6, MDM4, CASP8, 2q35, 2p24.1, TERT-rs10069690, ESR1, TOX3, 19p13.1, RALY), and we identified associations with TN breast cancer for 15 additional breast cancer loci (P < 0.05: PEX14, 2q24.1, 2q31.1, ADAM29, EBF1, TCF7L2, 11q13.1, 11q24.3, 12p13.1, PTHLH, NTN4, 12q24, BRCA2, RAD51L1-rs2588809, MKL1). Further, two SNPs independent of previously reported signals in ESR1 [rs12525163 odds ratio (OR) = 1.15, P = 4.9 × 10(-) (4)] and 19p13.1 (rs1864112 OR = 0.84, P = 1.8 × 10(-) (9)) were associated with TN breast cancer. A polygenic risk score (PRS) for TN breast cancer based on known breast cancer risk variants showed a 4-fold difference in risk between the highest and lowest PRS quintiles (OR = 4.03, 95% confidence interval 3.46-4.70, P = 4.8 × 10(-) (69)). This translates to an absolute risk for TN breast cancer ranging from 0.8% to 3.4%, suggesting that genetic variation may be used for TN breast cancer risk prediction.
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- 2014
46. Neuromuscular Assessment of a Stand-Up Paddle Stroke
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Freitas, João, primary, Conceição, Ana, additional, Šťastný, Jan, additional, Louro, Hugo, additional, Leitão, Luís, additional, Torres, Diana, additional, Marinho, Daniel A., additional, and Neiva, Henrique P., additional
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- 2023
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47. Co-observation of germline pathogenic variants in breast cancer predisposition genes: Results from analysis of the BRIDGES sequencing dataset
- Author
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Sahlberg, Kristine K., Børresen-Dale, Anne-Lise, Gram, Inger Torhild, Olsen, Karina Standahl, Engebråten, Olav, Naume, Bjørn, Geisler, Jürgen, OSBREAC, Grenaker Alnæs, Grethe I., Amor, David, Andrews, Lesley, Antill, Yoland, Balleine, Rosemary, Beesley, Jonathan, Bennett, Ian, Bogwitz, Michael, Bodek, Simon, Botes, Leon, Brennan, Meagan, Brown, Melissa, Buckley, Michael, Burke, Jo, Butow, Phyllis, Caldon, Liz, Campbell, Ian, Cao, Michelle, Chakrabarti, Anannya, Chauhan, Deepa, Chauhan, Manisha, Christian, Alice, Cohen, Paul, Colley, Alison, Crook, Ashley, Cui, James, Courtney, Eliza, Cummings, Margaret, Dawson, Sarah-Jane, deFazio, Anna, Delatycki, Martin, Dickson, Rebecca, Dixon, Joanne, Edwards, Stacey, Farshid, Gelareh, Fellows, Andrew, Fenton, Georgina, Field, Michael, Flanagan, James, Fong, Peter, Forrest, Laura, Fox, Stephen, French, Juliet, Friedlander, Michael, Gaff, Clara, Gattas, Mike, George, Peter, Greening, Sian, Harris, Marion, Hart, Stewart, Harraka, Philip, Hayward, Nick, Hopper, John, Hoskins, Cass, Hunt, Clare, Jenkins, Mark, Kidd, Alexa, Kirk, Judy, Koehler, Jessica, Kollias, James, Lakhani, Sunil, Lawrence, Mitchell, Lee, Jason, Li, Shuai, Lindeman, Geoff, Lippey, Jocelyn, Lipton, Lara, Lobb, Liz, Loi, Sherene, Mann, Graham, Marsh, Deborah, McLachlan, Sue Anne, Meiser, Bettina, Nightingale, Sophie, O'Connell, Shona, O'Sullivan, Sarah, Ortega, David Gallego, Pachter, Nick, Pang, Jia-Min, Pathak, Gargi, Patterson, Briony, Pearn, Amy, Phillips, Kelly, Pieper, Ellen, Ramus, Susan, Rickard, Edwina, Ragunathan, Abi, Robinson, Bridget, Saleh, Mona, Skandarajah, Anita, Salisbury, Elizabeth, Saunders, Christobel, Saunus, Jodi, Savas, Peter, Scott, Rodney, Scott, Clare, Sexton, Adrienne, Shaw, Joanne, Shelling, Andrew, Srinivasa, Shweta, Simpson, Peter, Taylor, Jessica, Taylor, Renea, Thorne, Heather, Trainer, Alison, Tucker, Kathy, Visvader, Jane, Walker, Logan, Williams, Rachael, Winship, Ingrid, Young, Mary Ann, Zaheed, Milita, Davidson, Aimee L., Michailidou, Kyriaki, Parsons, Michael T., Fortuno, Cristina, Bolla, Manjeet K., Wang, Qin, Dennis, Joe, Naven, Marc, Abubakar, Mustapha, Ahearn, Thomas U., Alonso, M. Rosario, Andrulis, Irene L., Antoniou, Antonis C., Auvinen, Päivi, Behrens, Sabine, Bermisheva, Marina A., Bogdanova, Natalia V., Bojesen, Stig E., Brüning, Thomas, Byers, Helen J., Camp, Nicola J., Campbell, Archie, Castelao, Jose E., Cessna, Melissa H., Chang-Claude, Jenny, Chanock, Stephen J., Chenevix-Trench, Georgia, Collée, J. Margriet, Czene, Kamila, Dörk, Thilo, Eriksson, Mikael, Evans, D. Gareth, Fasching, Peter A., Figueroa, Jonine D., Flyger, Henrik, Gago-Dominguez, Manuela, García-Closas, Montserrat, Glendon, Gord, González-Neira, Anna, Grassmann, Felix, Gronwald, Jacek, Guénel, Pascal, Hadjisavvas, Andreas, Haeberle, Lothar, Hall, Per, Hamann, Ute, Hartman, Mikael, Ho, Peh Joo, Hooning, Maartje J., Hoppe, Reiner, Howell, Anthony, Jakubowska, Anna, Khusnutdinova, Elza K., Kristensen, Vessela N., Li, Jingmei, Lim, Joanna, Lindblom, Annika, Liu, Jenny, Lophatananon, Artitaya, Mannermaa, Arto, Mavroudis, Dimitrios A., Mensenkamp, Arjen R., Milne, Roger L., Muir, Kenneth R., Newman, William G., Obi, Nadia, Panayiotidis, Mihalis I., Park, Sue K., Park-Simon, Tjoung-Won, Peterlongo, Paolo, Radice, Paolo, Rashid, Muhammad U., Rhenius, Valerie, Saloustros, Emmanouil, Sawyer, Elinor J., Schmidt, Marjanka K., Seibold, Petra, Shah, Mitul, Southey, Melissa C., Teo, Soo Hwang, Tomlinson, Ian, Torres, Diana, Truong, Thérèse, van de Beek, Irma, van der Hout, Annemieke H., Wendt, Camilla C., Dunning, Alison M., Pharoah, Paul D.P., Devilee, Peter, Easton, Douglas F., James, Paul A., and Spurdle, Amanda B.
- Published
- 2024
- Full Text
- View/download PDF
48. Diseno de una herramienta guia para la implementacion de Lean en laboratorios de educacion superior/Design of a Framework for Lean Implementation in Higher Education Labs/Desenho de uma ferramenta guia para a implementacao de Lean em laboratorios de ensino superior
- Author
-
Torres, Diana Carolina Bojacá, Jiménez, Ivonne Angélica Castiblanco, and Vargas, Jairo Raúl Chacón
- Published
- 2020
- Full Text
- View/download PDF
49. Derecho a la vivienda o la propiedad privada? De la politica publica a la informalidad urana en el Area Metropolitana de Lima (1996-2015)
- Author
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Torres, Diana and Ruiz-Tagle, Javier
- Published
- 2019
50. Genome-wide association study of germline variants and breast cancer-specific mortality
- Author
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Escala-Garcia, Maria, Guo, Qi, Dörk, Thilo, Canisius, Sander, Keeman, Renske, Dennis, Joe, Beesley, Jonathan, Lecarpentier, Julie, Bolla, Manjeet K., Wang, Qin, Abraham, Jean, Andrulis, Irene L., Anton-Culver, Hoda, Arndt, Volker, Auer, Paul L., Beckmann, Matthias W., Behrens, Sabine, Benitez, Javier, Bermisheva, Marina, Bernstein, Leslie, Blomqvist, Carl, Boeckx, Bram, Bojesen, Stig E., Bonanni, Bernardo, Børresen-Dale, Anne-Lise, Brauch, Hiltrud, Brenner, Hermann, Brentnall, Adam, Brinton, Louise, Broberg, Per, Brock, Ian W., Brucker, Sara Y., Burwinkel, Barbara, Caldas, Carlos, Caldés, Trinidad, Campa, Daniele, Canzian, Federico, Carracedo, Angel, Carter, Brian D., Castelao, Jose E., Chang-Claude, Jenny, Chanock, Stephen J., Chenevix-Trench, Georgia, Cheng, Ting-Yuan David, Chin, Suet-Feung, Clarke, Christine L., NBCS Collaborators, Cordina-Duverger, Emilie, Couch, Fergus J., Cox, David G., Cox, Angela, Cross, Simon S., Czene, Kamila, Daly, Mary B., Devilee, Peter, Dunn, Janet A., Dunning, Alison M., Durcan, Lorraine, Dwek, Miriam, Earl, Helena M., Ekici, Arif B., Eliassen, A. Heather, Ellberg, Carolina, Engel, Christoph, Eriksson, Mikael, Evans, D. Gareth, Figueroa, Jonine, Flesch-Janys, Dieter, Flyger, Henrik, Gabrielson, Marike, Gago-Dominguez, Manuela, Galle, Eva, Gapstur, Susan M., García-Closas, Montserrat, García-Sáenz, José A., Gaudet, Mia M., George, Angela, Georgoulias, Vassilios, Giles, Graham G., Glendon, Gord, Goldgar, David E., González-Neira, Anna, Alnæs, Grethe I. Grenaker, Grip, Mervi, Guénel, Pascal, Haeberle, Lothar, Hahnen, Eric, Haiman, Christopher A., Håkansson, Niclas, Hall, Per, Hamann, Ute, Hankinson, Susan, Harkness, Elaine F., Harrington, Patricia A., Hart, Steven N., Hartikainen, Jaana M., Hein, Alexander, Hillemanns, Peter, Hiller, Louise, Holleczek, Bernd, Hollestelle, Antoinette, Hooning, Maartje J., Hoover, Robert N., Hopper, John L., Howell, Anthony, Huang, Guanmengqian, Humphreys, Keith, Hunter, David J., Janni, Wolfgang, John, Esther M., Jones, Michael E., Jukkola-Vuorinen, Arja, Jung, Audrey, Kaaks, Rudolf, Kabisch, Maria, Kaczmarek, Katarzyna, Kerin, Michael J., Khan, Sofia, Khusnutdinova, Elza, Kiiski, Johanna I., Kitahara, Cari M., Knight, Julia A., Ko, Yon-Dschun, Koppert, Linetta B., Kosma, Veli-Matti, Kraft, Peter, Kristensen, Vessela N., Krüger, Ute, Kühl, Tabea, Lambrechts, Diether, Le Marchand, Loic, Lee, Eunjung, Lejbkowicz, Flavio, Li, Lian, Lindblom, Annika, Lindström, Sara, Linet, Martha, Lissowska, Jolanta, Lo, Wing-Yee, Loibl, Sibylle, Lubiński, Jan, Lux, Michael P., MacInnis, Robert J., Maierthaler, Melanie, Maishman, Tom, Makalic, Enes, Mannermaa, Arto, Manoochehri, Mehdi, Manoukian, Siranoush, Margolin, Sara, Martinez, Maria Elena, Mavroudis, Dimitrios, McLean, Catriona, Meindl, Alfons, Middha, Pooja, Miller, Nicola, Milne, Roger L., Moreno, Fernando, Mulligan, Anna Marie, Mulot, Claire, Nassir, Rami, Neuhausen, Susan L., Newman, William T., Nielsen, Sune F., Nordestgaard, Børge G., Norman, Aaron, Olsson, Håkan, Orr, Nick, Pankratz, V. Shane, Park-Simon, Tjoung-Won, Perez, Jose I. A., Pérez-Barrios, Clara, Peterlongo, Paolo, Petridis, Christos, Pinchev, Mila, Prajzendanc, Karoliona, Prentice, Ross, Presneau, Nadege, Prokofieva, Darya, Pylkäs, Katri, Rack, Brigitte, Radice, Paolo, Ramachandran, Dhanya, Rennert, Gadi, Rennert, Hedy S., Rhenius, Valerie, Romero, Atocha, Roylance, Rebecca, Saloustros, Emmanouil, Sawyer, Elinor J., Schmidt, Daniel F., Schmutzler, Rita K., Schneeweiss, Andreas, Schoemaker, Minouk J., Schumacher, Fredrick, Schwentner, Lukas, Scott, Rodney J., Scott, Christopher, Seynaeve, Caroline, Shah, Mitul, Simard, Jacques, Smeets, Ann, Sohn, Christof, Southey, Melissa C., Swerdlow, Anthony J., Talhouk, Aline, Tamimi, Rulla M., Tapper, William J., Teixeira, Manuel R., Tengström, Maria, Terry, Mary Beth, Thöne, Kathrin, Tollenaar, Rob A. E. M., Tomlinson, Ian, Torres, Diana, Truong, Thérèse, Turman, Constance, Turnbull, Clare, Ulmer, Hans-Ulrich, Untch, Michael, Vachon, Celine, van Asperen, Christi J., van den Ouweland, Ans M. W., van Veen, Elke M., Wendt, Camilla, Whittemore, Alice S., Willett, Walter, Winqvist, Robert, Wolk, Alicja, Yang, Xiaohong R., Zhang, Yan, Easton, Douglas F., Fasching, Peter A., Nevanlinna, Heli, Eccles, Diana M., Pharoah, Paul D. P., and Schmidt, Marjanka K.
- Published
- 2019
- Full Text
- View/download PDF
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