43 results on '"Heijnen, C.J."'
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2. Nasal administration of mesenchymal stem cells reverses chemotherapy-induced peripheral neuropathy
3. Abstract # 3142 Association between complicated grief and inflammation among bereaved adults
4. Abstract # 3141 Association between depression and inflammation among bereaved adults
5. Intranasal administration of human mesenchymal stem cells promote recovery from chemoradiation-induced cognitive and functional deficit in mice
6. T cells are necessary for resolution of inflammation-induced depression-like behavior
7. Inflammation alters motivational processes in mice independently of its ability to activate indoleamine 2,3-dioxygenase
8. Tumor-associated fatigue develops independently of inflammation
9. HDAC6 inhibition effectively reverses chemotherapy-induced peripheral neuropathy
10. Abstract # 1720 T lymphocytes are required for resolution of inflammatory pain and depression-like behavior
11. Abstract # 1777 Differential mechanisms of cancer- versus cancer therapy-related fatigue in patients with acute myeloid leukemia
12. Abstract # 1749 Tumor-induced inflammation mediates behavioral deficits in a murine model of head and neck cancer
13. Abstract # 1778 Intranasal administration of mesenchymal stem cells promote recovery from cisplatin-induced neurological and cognitive impairments
14. Abstract # 1745 Evidence for dissociation between spontaneous pain and depression-like behavior in neuropathic pain models
15. Prevention of chemotherapy-induced peripheral neuropathy by the small-molecule inhibitor Pifithrin-mu in a mouse model
16. Identification of CD8+ T lymphocytes as a critical step in the recovery from paclitaxel-induced peripheral neuropathy
17. Chemoradiation abrogates inflammation, induces sickness behavior, activates hypoxia signaling pathways, and causes mitochondrial dysfunction in a syngeneic murine model of head and neck cancer
18. Pifithrin-mu prevents cisplatin-induced cognitive impairment and neuronal mitochondrial dysfunction
19. An HDAC6 inhibitor for treatment of chemotherapy-induced peripheral numbness and pain in a mouse model
20. 67. The AMP-kinase inhibitor metformin inhibits chemotherapy-induced peripheral neuropathy
21. 107. CD8+ T cells are important for recovery from chemotherapy-induced neuropathy in mice
22. 63. GRK2 phosphorylates Epac1 to inhibit signaling and prevent chronic inflammatory pain
23. 109. Pifithrin-μ prevents paclitaxel-induced peripheral neuropathy in a mouse model
24. 164. Negative affectivity predicts decreased pain tolerance during low-grade inflammation in healthy women
25. 88. Contribution of peripheral immune cells to chemotherapy-induced neuropathy
26. 61. Peripheral monocytes/macrophages promote resolution of acute inflammatory pain via an IL-10 dependent pathway
27. 130. Intranasal Mesenchymal stem cell transplantation restores brain damage, improves sensori-motor function and reverses depressive-like behavior in a model of subarachnoidal hemorrhage in rats
28. 66. Intrathecal administration of microRNA-124 alleviates both neuropathic pain and depression-like behavior in mice
29. 118. Indoleamine 2,3 dioxygenase (IDO1) is a key regulator of depressive-like behavior but not of mechanical hyperalgesia in the spared nerve injury model of neuropathic pain
30. 148. Treatment of Neonatal Brain Injury with Mesenchymal Stem Cells
31. 10. A novel role of miR124 in inflammatory hyperalgesia and the spinal cord microglial M1/M2 balance
32. 154. Glucocorticoid sensitivity of leukocytes predicts fatigue, depressive, and PTSD symptoms after military deployment
33. 156. Targeting the GRK2–Epac1 balance: A novel route to prevent transition to chronic pain
34. 85. GRK2 in sensory neurons regulates epinephrine-induced signalling and duration of mechanical hyperalgesia
35. 141. Chronic fatigue in patients with sarcoidosis-in-clinical-remission is associated with specific cytokine profiles
36. 86. Low GRK2 in microglia/macrophages prevents silencing of spinal cord microglia and promotes transition to chronic pain
37. Mesenchymal stem cells to treat hypoxic–ischemic brain damage: Formation of new neurons and oligodendrocytes to restore damage, corticospinal motor tract activity and sensorimotor behavior
38. A small peptide inhibitor of the JNK-AP-1 pathway protects against hypoxic–ischemic brain damage and improves behavioral outcome without inhibiting neuroinflammation
39. Increased glucocorticoid binding to peripheral blood mononuclear cells before military deployment in individuals developing PTSD symptoms 6 months after deployment
40. A novel neuronal mechanism for transition from acute to chronic pain: Epinephrine and prostaglandin-E2 as models for stress and inflammation-associated hyperalgesia
41. Microglial GRK2 determines duration of inflammatory pain
42. Visceral pain and public speaking stress: Neuroendocrine and immune cell responses in healthy subjects
43. #92 Delayed recovery of rectal distension stress-induced increases in circulating CD3−CD16+CD56+ lymphocytes in patients with irritable bowel syndrome
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