406 results on '"Eijkelkamp, Niels"'
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2. Brain functional imaging contributions in osteoarthritis-related pain: A viewpoint
3. Lower hair cortisol concentration in adolescent and young adult patients with Myalgic Encephalomyelitis/Chronic Fatigue Syndrome and Q-Fever Fatigue Syndrome compared to controls
4. Effects of mesenchymal stem cells and heparan sulfate mimetics on urethral function and vaginal wall biomechanics in a simulated rat childbirth injury model
5. Mesenchymal stem/stromal cells-derived extracellular vesicles as a potentially more beneficial therapeutic strategy than MSC-based treatment in a mild metabolic osteoarthritis model
6. Myostatin and CXCL11 promote nervous tissue macrophages to maintain osteoarthritis pain
7. Insights into FcγR involvement in pain-like behavior induced by an RA-derived anti-modified protein autoantibody
8. Cytokine receptor clustering in sensory neurons with an engineered cytokine fusion protein triggers unique pain resolution pathways
9. Macrophages transfer mitochondria to sensory neurons to resolve inflammatory pain
10. Identifying disrupted biological factors and patient-tailored interventions for chronic fatigue in adolescents and young adults with Q-Fever Fatigue Syndrome, Chronic Fatigue Syndrome and Juvenile Idiopathic Arthritis (QFS-study): study protocol for a randomized controlled trial with single-subject experimental case series design
11. Feasibility of quantitative sensory testing in juvenile idiopathic arthritis
12. Human IAPP is a contributor to painful diabetic peripheral neuropathy
13. Lower hair cortisol concentration in adolescent and young adult patients with Myalgic Encephalomyelitis/Chronic Fatigue Syndrome and Q-Fever Fatigue Syndrome compared to controls
14. Human islet amyloid polypeptide (IAPP): a culprit of Type 2 Diabetes Mellitus (T2DM) and T2DM neuropathy
15. Myostatin and CXCL11 promote nervous tissue macrophages to maintain osteoarthritis pain
16. The methyltransferase METTL9 mediates pervasive 1-methylhistidine modification in mammalian proteomes
17. Human FAM173A is a mitochondrial lysine-specific methyltransferase that targets adenine nucleotide translocase and affects mitochondrial respiration
18. Lysine methylation by the mitochondrial methyltransferase FAM173B optimizes the function of mitochondrial ATP synthase
19. Myostatin and CXCL11 promote nervous tissue macrophages to maintain osteoarthritis pain
20. First trimester placental vascularization and angiogenetic factors are associated with adverse pregnancy outcome
21. Sensory Signaling Pathways in Inflammatory and Neuropathic Pain
22. Inflammation-induced mitochondrial and metabolic disturbances in sensory neurons control the switch from acute to chronic pain
23. NLRP3 inflammasome activation in sensory neurons promotes chronic inflammatory and osteoarthritis pain
24. Sensory Signaling Pathways in Inflammatory and Neuropathic Pain
25. Critical role for Epac1 in inflammatory pain controlled by GRK2-mediated phosphorylation of Epac1
26. Sialic Acid-Engineered IL4–10 Fusion Protein is Bioactive and Rapidly Cleared from the Circulation
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28. Sustained release of locally delivered celecoxib provides pain relief for osteoarthritis: a proof of concept in dog patients
29. Surgery and Behavioral Testing in the Tibial Neuroma Transposition Model in Rats
30. Mesenchymal stem/stromal cells-derived extracellular vesicles as a potentially more beneficial therapeutic strategy than MSC-based treatment in a mild metabolic osteoarthritis model
31. Mesenchymal stem/stromal cells-derived extracellular vesicles as a potentially more beneficial therapeutic strategy than MSC-based treatment in a mild metabolic osteoarthritis model
32. Sustained release of locally delivered celecoxib provides pain relief for osteoarthritis: a proof of concept in dog patients
33. Inflammation-induced mitochondrial and metabolic disturbances in sensory neurons control the switch from acute to chronic pain
34. NLRP3 inflammasome activation in sensory neurons promotes chronic inflammatory and osteoarthritis pain
35. Human IAPP is a contributor to painful diabetic peripheral neuropathy
36. Mesenchymal stem/stromal cells-derived extracellular vesicles as a potentially more beneficial therapeutic strategy than MSC-based treatment in a mild metabolic osteoarthritis model
37. Effects of mesenchymal stem cells and heparan sulfate mimetics on urethral function and vaginal wall biomechanics in a simulated rat childbirth injury model
38. Sustained release of locally delivered celecoxib provides pain relief for osteoarthritis: a proof of concept in dog patients
39. Additional file 1 of Mesenchymal stem/stromal cells-derived extracellular vesicles as a potentially more beneficial therapeutic strategy than MSC-based treatment in a mild metabolic osteoarthritis model
40. Surgery and Behavioral Testing in the Tibial Neuroma Transposition Model in Rats
41. Monocytes/Macrophages Control Resolution of Transient Inflammatory Pain
42. Mitochondria and sensory processing in inflammatory and neuropathic pain
43. Noxious mechanosensation – molecules and circuits
44. Inflammation-induced mitochondrial and metabolic disturbances in sensory neurons control the switch from acute to chronic pain
45. Identifying disrupted biological factors and patient-tailored interventions for chronic fatigue in adolescents and young adults with Q-Fever Fatigue Syndrome, Chronic Fatigue Syndrome and Juvenile Idiopathic Arthritis (QFS-study): study protocol for a randomized controlled trial with single-subject experimental case series design
46. Feasibility of quantitative sensory testing in juvenile idiopathic arthritis
47. Mitochondria and sensory processing in inflammatory and neuropathic pain
48. Identifying disrupted biological factors and patient-tailored interventions for chronic fatigue in adolescents and young adults with Q-Fever Fatigue Syndrome, Chronic Fatigue Syndrome and Juvenile Idiopathic Arthritis (QFS-study): study protocol for a randomized controlled trial with single-subject experimental case series design
49. Macrophages transfer mitochondria to sensory neurons to resolve inflammatory pain
50. Microglial GRK2: A novel regulator of transition from acute to chronic pain
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