914 results on '"Hasselbalch, Hans Carl"'
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2. Neutrophil-to-lymphocyte ratio and all-cause mortality with and without myeloproliferative neoplasms—a Danish longitudinal study
3. Metformin use and risk of myeloproliferative neoplasms: a Danish population–based case-control study
4. Serum levels of IL-4, IL-13 and IL-33 in patients with age-related macular degeneration and myeloproliferative neoplasms
5. JAK2V617F mutation is highly prevalent in patients with ischemic stroke: a case-control study
6. Use of statins and risk of myeloproliferative neoplasms: a Danish nationwide case-control study
7. The gut microbiota in patients with polycythemia vera is distinct from that of healthy controls and varies by treatment
8. Genomic profiling of a randomized trial of interferon-α vs hydroxyurea in MPN reveals mutation-specific responses
9. The CHIP-clinic as the catalyst of preventive medicine.
10. The CALR mutations enhance the expression of the immunosuppressive proteins GARP and LAP on peripheral blood lymphocytes through increased binding of activated platelets.
11. Patients with MPNs and retinal drusen show signs of complement system dysregulation and a high degree of chronic low-grade inflammation
12. CHIP-JAK2V617F, chronic inflammation, abnormal megakaryocyte morphology, organ failure, and multimorbidties
13. JAK2V617F drives gut microbiota differences in patients with myeloproliferative neoplasms
14. Increased oxidative stress with substantial dysregulation of genes related to oxidative stress and DNA repair after laparoscopic colon cancer surgery
15. Patients with myeloproliferative neoplasms and high levels of systemic inflammation develop age-related macular degeneration
16. Two-fold risk of pneumonia and respiratory mortality in individuals with myeloproliferative neoplasm: A population-based cohort study
17. Loss-of-function polymorphism in IL6R reduces risk of JAK2V617F somatic mutation and myeloproliferative neoplasm: A Mendelian randomization study
18. CHIP-JAK2V617F, chronic inflammation, abnormal megakaryocyte morphology, organ failure, and multimorbidties
19. JAK2V617F drives gut microbiota differences in patients with myeloproliferative neoplasms
20. Evidence of immune elimination, immuno-editing and immune escape in patients with hematological cancer
21. Association of the blood eosinophil count with end-organ symptoms
22. Proof of concept of triple COMBI therapy to prohibit MPN progression to AML
23. Pronounced gut microbiota signatures in patients with JAK2V617F- positive essential thrombocythemia
24. JAK2V617Fmutation is highly prevalent in patients with ischemic stroke: a case-control study
25. Elevated white blood cell counts in ischemic stroke patients are associated with increased mortality and new vascular events
26. Labor market affiliation of patients with myeloproliferative neoplasms: a population-based matched cohort study
27. Whole Blood Gene Expression Profiling in patients undergoing colon cancer surgery identifies differential expression of genes involved in immune surveillance, inflammation and carcinogenesis
28. Cancer immune therapy for myeloid malignancies: present and future
29. Perspectives on interferon-alpha in the treatment of polycythemia vera and related myeloproliferative neoplasms: minimal residual disease and cure?
30. Cardiovascular disease in chronic myelomonocytic leukemia: do monocytosis and chronic inflammation predispose to accelerated atherosclerosis?
31. Revisiting Circulating Extracellular Matrix Fragments as Disease Markers in Myelofibrosis and Related Neoplasms
32. Therapeutic cancer vaccination against mutant calreticulin in myeloproliferative neoplasms induces expansion of specific T cells in the periphery but specific T cells fail to enrich in the bone marrow
33. Philadelphia chromosome-negative classical myeloproliferative neoplasms: revised management recommendations from European LeukemiaNet
34. Labor market affiliation of patients with myeloproliferative neoplasms : a population-based matched cohort study
35. Pronounced gut microbiota signatures in patients with JAK2V617F-positive essential thrombocythemia
36. Therapeutic cancer vaccination against mutant calreticulin in myeloproliferative neoplasms induces expansion of specific T cells in the periphery but specific T cells fail to enrich in the bone marrow
37. JAK2V617F mutation is highly prevalent in patients with ischemic stroke:a case-control study
38. Elevated white blood cell counts in ischemic stroke patients are associated with increased mortality and new vascular events
39. Revisiting Circulating Extracellular Matrix Fragments as Disease Markers in Myelofibrosis and Related Neoplasms
40. Antecedent cardiovascular disease and autoimmunity in Philadelphia-negative chronic myeloproliferative neoplasms
41. A new internet-based tool for reporting and analysing patient-reported outcomes and the feasibility of repeated data collection from patients with myeloproliferative neoplasms
42. Quality of Life and Symptom Burden of Patients with MPN during Treatment with Hydroxyurea or Pegylated Interferon-alpha2: Results from a Randomized Controlled Trial
43. Smoking and Increased White and Red Blood Cells: A Mendelian Randomization Approach in the Copenhagen General Population Study
44. Whole blood transcriptional profiling reveals highly deregulated atherosclerosis genes in Philadelphia-chromosome negative myeloproliferative neoplasms.
45. Elevated white blood cell counts in ischemic stroke patients are associated with increased mortality and new vascular events.
46. An arginase1- and PD-L1-derived peptide-based vaccine for myeloproliferative neoplasms: A first-in-man clinical trial
47. Publisher Correction: Epigenetic changes in myelofibrosis: Distinct methylation changes in the myeloid compartments and in cases with ASXL1 mutations
48. Smoking as a contributing factor for development of polycythemia vera and related neoplasms
49. Survival of patients with chronic myeloproliferative neoplasms and new primary cancers: a population-based cohort study
50. Interferon-alpha2 Treatment Reduces Circulating Neutrophil Extracellular Trap Levels in Myeloproliferative Neoplasms
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