159 results on '"Meulenbelt, I."'
Search Results
2. Hyper-Physiologic Mechanical Loading Conditions Cause A Shift In The Epigenetic Landscape In Neo-Cartilage Organoids
3. Identification Of Circulating Micro Rnas To Predict Osteoarthritis Molecular Endotypes By Whole Transcriptomic Data Integration And Matching Druggable Targets
4. Modelling Senescence In Osteoarthritis: Combining Irradiation And Mechanical Loading In Human Osteochondral Explants
5. High-Impact Fn1 Mutation Abrogates Response Of Chondrocytes To Hyper-Physiological Loading
6. WWP2 confers risk to osteoarthritis by affecting cartilage matrix deposition via hypoxia associated genes
7. ANP32A represses Wnt signaling across tissues thereby protecting against osteoarthritis and heart disease
8. FUNCTIONAL GENOMICS HIGHLIGHTS ROLE FOR OSTEOARTHRITIS SUSCEPTIBILITY GENE WWP2 IN CARTILAGE MATRIX DEPOSITION
9. RNA SEQUENCING REVEALS NOVEL MARKERS AND PATHWAYS OF T3-INDUCED CARTILAGE HYPERTROPHY
10. BLOOD MICRO-RNAS DELINEATING SENESCENCE PHENOTYPES IN OSTEOARTHRITIS
11. A MOLECULAR MAP OF LONG NON-CODING RNA EXPRESSION, ISOFORM SWITCHING AND ALTERNATIVE SPLICING IN OSTEOARTHRITIS
12. TOWARDS APPLICATION OF CELL THERAPY USING HIPSC-DERIVED MSCS AS A STABLE ‘OFF-THE-SHELF’ CELL SOURCE.
13. IDENTIFICATION AND FUNCTIONAL CHARACTERIZATION IMBALANCED OSTEOARTHRITIS ASSOCIATED FIBRONECTIN SPLICE VARIANTS
14. OSTEOARTHRITIS-RISK MUTATION IN PERICELLULAR MATRIX COL6A3 FIBRILS ALTERS BIOLOGIC RESPONSE OF CHONDROCYTES TO HYPER-PHYSIOLOGIC MECHANICAL LOADING CONDITIONS
15. AN EPIGENOME-WIDE VIEW OF OSTEOARTHRITIS IN PRIMARY TISSUES
16. OPPOSITE EFFECTS OF HYPER-PHYSIOLOGICAL MECHANICAL STRESS AND INFLAMMATION ON WNT SIGNALING IN HUMAN CHONDROCYTE NEO-CARTILAGE PELLETS
17. How does hip osteoarthritis differ from knee osteoarthritis?
18. Higher thyroid stimulating hormone leads to cardiovascular disease and an unfavorable lipid profile: EVidence from multi-cohort Mendelian randomization and metabolomic profiling
19. Characterization of dynamic changes in Matrix Gla Protein (MGP) gene expression as function of genetic risk alleles, osteoarthritis relevant stimuli, and the vitamin K inhibitor warfarin
20. High impact mutation FN1 affects cartilage integrity via aberrant binding to collagen type II
21. An epigenome-wide view of osteoarthritis in target tissues
22. Targeted exploration of an RNA sequencing dataset of preserved and lesioned oa cartilage-establishing a human oa disease model of chondrocyte hypertrophy
23. Mechanical stress induces ADAMTS5 mediated cartilage damage in human neo-cartilage and activates non-canonical Wnt signaling and transcription factor FOS
24. A disease-risk mutation in COL6A3 alters the biologic response of chondrocytes to hyper-physiologic mechanical loading
25. Allelic expression imbalance refined genome-wide association signals in osteoarthritis
26. Development of a human osteochondral construct on a microfluidic chip – to advance functional studies of osteoarthritis risk genes
27. Unravelling the role of osteoprotegerin in osteoarthritis by applying a human isogenic induced pluripotent stem cell model
28. Identifying differential gene expression induced by mechanical stress in cartilage of human explants using RNA-sequencing
29. Large-scale transcriptomic analysis reveals new markers of osteoarthritis progression
30. Variants of FOXO3 and RPA3 genes affecting IGF-1 levels alter the risk of development of primary osteoarthritis
31. Arthropathy in Long-Term Cured Acromegaly; a Comparison with Primary Osteoarthritis.
32. Serum fatty acid chain length associates with prevalent symptomatic end-stage osteoarthritis, independent of BMI
33. Large-scale genome-wide meta-analyses provide insights for the development of new disease modifying targets for osteoarthritis
34. Vitamin K antagonist usage is associated with increased incidence and progression of osteoarthritis
35. Characterization of the pathophysiological processes of osteoarthritis using RNA sequencing data of subchondral bone
36. WISP1 expression is responsive to mechanical stress in human primary articular chondrocyte pellets
37. ANP32A is a hub molecule regulating a protective network against osteoarthritis
38. Network-based approach identified distinct pathways between lesioned and preserved articular cartilage transcriptome
39. Long non-coding RNA expression profiling by RNA-sequencing in osteoarthritis cartilage
40. Unravelling the role of WWP2 in the development and progression of osteoarthritis
41. A comparison of chondrogenesis oriented differentiating protocols for induced pluripotent stem cells
42. Metabolomics Profile in Depression: A Pooled Analysis of 230 Metabolic Markers in 5283 Cases With Depression and 10,145 Controls
43. Unraveling the role of WWP2 in osteoarthritis pathophysiology
44. Setting up a pre-clinical human model for mechanical induced osteoarthritis to investigate potential pharmocological agents
45. Clutering analyisis and clinical data integration reveals two subgroups of osteoarthritis patients
46. Osteoarthritis subtypes show distinguished transcriptomic landscapes
47. Towards the elucidation of the role of osteoprotegerin in the development of osteoarthritis
48. ANP32A regulates ATM expression and prevents oxidative stress in cartilage, brain and bone
49. Identification of a high impact mutation in the FN1 gene in early-onset osteoarthritis family
50. Addition of excess thyroid hormone induces detrimental changes in human ex vivo full thickness osteochondral explants
Catalog
Books, media, physical & digital resources
Discovery Service for Jio Institute Digital Library
For full access to our library's resources, please sign in.