34 results on '"DeLeo JA"'
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2. Critical data-based re-evaluation of minocycline as a putative specific microglia inhibitor.
3. GLT1 overexpression reverses established neuropathic pain-related behavior and attenuates chronic dorsal horn neuron activation following cervical spinal cord injury.
4. Alkylindole-sensitive receptors modulate microglial cell migration and proliferation.
5. Histamine H3 receptor in primary mouse microglia inhibits chemotaxis, phagocytosis, and cytokine secretion.
6. Microglial regulation of immunological and neuroprotective functions of astroglia.
7. Interleukin-1 beta enhances endocytosis of glial glutamate transporters in the spinal dorsal horn through activating protein kinase C.
8. Paradoxical effects of minocycline in the developing mouse somatosensory cortex.
9. Adaptive phenotype of microglial cells during the normal postnatal development of the somatosensory 'Barrel' cortex.
10. COX-1-dependent prostaglandin D2 in microglia contributes to neuropathic pain via DP2 receptor in spinal neurons.
11. Minocycline and fluorocitrate suppress spinal nociceptive signaling in intrathecal IL-1β-induced thermal hyperalgesic rats.
12. Astrocytic CX43 hemichannels and gap junctions play a crucial role in development of chronic neuropathic pain following spinal cord injury.
13. Microglia are required for astroglial toll-like receptor 4 response and for optimal TLR2 and TLR3 response.
14. Following nerve injury neuregulin-1 drives microglial proliferation and neuropathic pain via the MEK/ERK pathway.
15. The role of TLR2 in nerve injury-induced neuropathic pain is essentially mediated through macrophages in peripheral inflammatory response.
16. Nerve injury-activated microglia engulf myelinated axons in a P2Y12 signaling-dependent manner in the dorsal horn.
17. Spinal injection of TNF-α-activated astrocytes produces persistent pain symptom mechanical allodynia by releasing monocyte chemoattractant protein-1.
18. Foxp3 is a novel repressor of microglia activation.
19. NOD2 mediates inflammatory responses of primary murine glia to Streptococcus pneumoniae.
20. Leukotriene synthases and the receptors induced by peripheral nerve injury in the spinal cord contribute to the generation of neuropathic pain.
21. Innate immunity and neuroinflammation in the CNS: The role of microglia in Toll-like receptor-mediated neuronal injury.
22. Microglial precursors derived from mouse embryonic stem cells.
23. Microglia and neuropathic pain.
24. NOD2 plays an important role in the inflammatory responses of microglia and astrocytes to bacterial CNS pathogens.
25. Glial TLR4 receptor as new target to treat neuropathic pain: Efficacy of a new receptor antagonist in a model of peripheral nerve injury in mice.
26. Transforming growth factor-activated kinase 1 induced in spinal astrocytes contributes to mechanical hypersensitivity after nerve injury.
27. Astrocytes produce interferon-alpha and CXCL10, but not IL-6 or CXCL8, in aicardi-Goutières syndrome.
28. Activation of dorsal horn microglia contributes to diabetes-induced tactile allodynia via extracellular signal-regulated protein kinase signaling.
29. Bacteria and PAMPs activate nuclear factor κB and Gro production in a subset of olfactory ensheathing cells and astrocytes but not in Schwann cells.
30. Tissue type plasminogen activator induced in rat dorsal horn astrocytes contributes to mechanical hypersensitivity following dorsal root injury.
31. Identification of soluble CD14 as an endogenous agonist for Toll-like receptor 2 on human astrocytes by genome-scale functional screening of glial cell derived proteins.
32. Murine glia express the immunosuppressive cytokine, interleukin-10, following exposure to Borrelia burgdorferi or Neisseria meningitidis.
33. Visualising microglial activation in vivo.
34. Basic principles of immunological surveillance of the normal central nervous system.
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