998 results on '"Anant, Shrikant"'
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2. Tumor-initiating stem cell shapes its microenvironment into an immunosuppressive barrier and pro-tumorigenic niche
3. Diphenylbutylpiperidine Antipsychotic Drugs Inhibit Prolactin Receptor Signaling to Reduce Growth of Pancreatic Ductal Adenocarcinoma in Mice
4. Synthesis and bioevaluation of new vascular-targeting and anti-angiogenic thieno[2,3-d]pyrimidin-4(3H)-ones
5. Selective targeting of IRAK1 attenuates low molecular weight hyaluronic acid-induced stemness and non-canonical STAT3 activation in epithelial ovarian cancer
6. DCLK1-Mediated Regulation of Invadopodia Dynamics and Matrix Metalloproteinase Trafficking Drives Invasive Progression in Head and Neck Squamous Cell Carcinoma
7. Infection-induced signals generated at the plasma membrane epigenetically regulate Wnt signaling in vitro and in vivo
8. Regulatory Role of Quiescence in the Biological Function of Cancer Stem Cells
9. Correction: Synthetic adiponectin-receptor agonist, AdipoRon, induces glycolytic dependence in pancreatic cancer cells
10. Synthetic adiponectin-receptor agonist, AdipoRon, induces glycolytic dependence in pancreatic cancer cells
11. Correction: DCLK1 isoforms and aberrant Notch signaling in the regulation of human and murine colitis
12. DCLK1 isoforms and aberrant Notch signaling in the regulation of human and murine colitis
13. The Histone Demethylase KDM3A, Increased in Human Pancreatic Tumors, Regulates Expression of DCLK1 and Promotes Tumorigenesis in Mice
14. Preclinical Pharmacokinetics of Fosciclopirox, a Novel Treatment of Urothelial Cancers, in Rats and Dogs
15. Anticancer and antimetastatic potential of enterolactone: Clinical, preclinical and mechanistic perspectives
16. Role of STAT3 in pancreatic cancer
17. Bypassing the Tollway; a novel path to TLR4 independent stemness regulation
18. Studying the Efficacy of Tolmetin Radiosensitizing Effect in Radiotherapy Treatment on Human Clonal Cancer Cells.
19. Yin-Yang of Oxidative Stress in Pancreatic Cancers
20. Development and Characterization of an In Vitro Model for Radiation-Induced Fibrosis
21. Fosciclopirox suppresses growth of high-grade urothelial cancer by targeting the γ-secretase complex
22. Functional cooperativity of p97 and histone deacetylase 6 in mediating DNA repair in mantle cell lymphoma cells
23. Dynamic Antagonism between RNA-Binding Protein CUGBP2 and Cyclooxygenase-2-Mediated Prostaglandin E2 in Radiation Damage
24. Acryl-3,5-bis(2,4-difluorobenzylidene)-4-piperidone targeting cellular JUN proto-oncogene, AP-1 transcription factor subunit inhibits head and neck squamous cell carcinoma progression
25. IRAK1 is a critical mediator of low molecular weight hyaluronic acid-induced stemness in high-grade serous ovarian cancer
26. Targeting cancer stem cells and signaling pathways by phytochemicals: Novel approach for breast cancer therapy
27. Bitter melon: a panacea for inflammation and cancer
28. Suppressing STAT5 signaling affects osteosarcoma growth and stemness
29. Cucurbitacin B and I inhibits colon cancer growth by targeting the Notch signaling pathway
30. Supplementary Table 1 from CDK-4 Inhibitor P276 Sensitizes Pancreatic Cancer Cells to Gemcitabine-Induced Apoptosis
31. Data from 3,5-Bis(2,4-Difluorobenzylidene)-4-piperidone, a Novel Compound That Affects Pancreatic Cancer Growth and Angiogenesis
32. Supplementary Figure Legends 1-2 from Honokiol in Combination with Radiation Targets Notch Signaling to Inhibit Colon Cancer Stem Cells
33. Data from Honokiol in Combination with Radiation Targets Notch Signaling to Inhibit Colon Cancer Stem Cells
34. Data from CDK-4 Inhibitor P276 Sensitizes Pancreatic Cancer Cells to Gemcitabine-Induced Apoptosis
35. Supplementary Figure 1 from 3,5-Bis(2,4-Difluorobenzylidene)-4-piperidone, a Novel Compound That Affects Pancreatic Cancer Growth and Angiogenesis
36. Supplementary Figure Legend from 3,5-Bis(2,4-Difluorobenzylidene)-4-piperidone, a Novel Compound That Affects Pancreatic Cancer Growth and Angiogenesis
37. Supplementary Figure 2 from Honokiol in Combination with Radiation Targets Notch Signaling to Inhibit Colon Cancer Stem Cells
38. Supplementary Figure 1 from Honokiol in Combination with Radiation Targets Notch Signaling to Inhibit Colon Cancer Stem Cells
39. Figure S6 from Secretory Autophagy in Cancer-Associated Fibroblasts Promotes Head and Neck Cancer Progression and Offers a Novel Therapeutic Target
40. Supplementary Figures S2 and S3 from Metastatic Tumor-in-a-Dish, a Novel Multicellular Organoid to Study Lung Colonization and Predict Therapeutic Response
41. Data from Metastatic Tumor-in-a-Dish, a Novel Multicellular Organoid to Study Lung Colonization and Predict Therapeutic Response
42. Supplementary Fig S5 Table S3 from Metastatic Tumor-in-a-Dish, a Novel Multicellular Organoid to Study Lung Colonization and Predict Therapeutic Response
43. Figure S2 from Cancer-Associated Fibroblasts Drive Glycolysis in a Targetable Signaling Loop Implicated in Head and Neck Squamous Cell Carcinoma Progression
44. Data from Secretory Autophagy in Cancer-Associated Fibroblasts Promotes Head and Neck Cancer Progression and Offers a Novel Therapeutic Target
45. Supplementary Table S2 from Metastatic Tumor-in-a-Dish, a Novel Multicellular Organoid to Study Lung Colonization and Predict Therapeutic Response
46. Supplemental Figure Legends from Cancer-Associated Fibroblasts Drive Glycolysis in a Targetable Signaling Loop Implicated in Head and Neck Squamous Cell Carcinoma Progression
47. Supplementary Figure and Table Legends from Metastatic Tumor-in-a-Dish, a Novel Multicellular Organoid to Study Lung Colonization and Predict Therapeutic Response
48. Supplemental Figure Legends from Secretory Autophagy in Cancer-Associated Fibroblasts Promotes Head and Neck Cancer Progression and Offers a Novel Therapeutic Target
49. Data from Cancer-Associated Fibroblasts Drive Glycolysis in a Targetable Signaling Loop Implicated in Head and Neck Squamous Cell Carcinoma Progression
50. Supplementary Fig S4 from Metastatic Tumor-in-a-Dish, a Novel Multicellular Organoid to Study Lung Colonization and Predict Therapeutic Response
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