4.5 Article

Organization of hyperactive microglial cells in trigeminal spinal subnucleus caudalis and upper cervical spinal cord associated with orofacial neuropathic pain

期刊

BRAIN RESEARCH
卷 1451, 期 -, 页码 74-86

出版社

ELSEVIER
DOI: 10.1016/j.brainres.2012.02.023

关键词

MAP kinase; Infraorbital nerve; Chronic constriction injury; Glia; Central sensitization; Neuropathic pain

资金

  1. Nihon University School of Dentistry
  2. Dental Research Center, Nihon University School of Dentistry
  3. Nihon University
  4. Ministry of Education, Culture, Sports, Science and Technology
  5. Japan-Canada (CIHR)
  6. NIH [DE015420]
  7. Grants-in-Aid for Scientific Research [24659832] Funding Source: KAKEN

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The aim of this study was to evaluate spatial organization of hyperactive microglial cells in trigeminal spinal subnucleus caudalis (Vc) and upper cervical spinal cord (Cl), and to clarify the involvement in mechanisms underlying orofacial secondary hyperalgesia following infraorbital nerve injury. We found that the head-withdrawal threshold to non-noxious mechanical stimulation of the maxillary whisker pad skin was significantly reduced in chronic constriction injury of the infraorbital nerve (ION-CCI) rats from day 1 to day 14 after ION-CCI. On day 3 after ION-CCI, mechanical allodynia was obvious in the orofacial skin areas innervated by the 1st and 3rd branches of the trigeminal nerve as well as the 2nd branch area. Hyperactive microglial cells in Vc and Cl were observed on days 3 and 7 after ION-CCI. On day 3 after ION-CC!, a large number of phosphorylated extracellular signal-regulated ldnase (pERK)-immunoreactive (IR) cells were observed in Vc and Cl. Many hyperactive microglial cells were also distributed over a wide area of Vc and Cl innervated by the trigeminal nerve. The intraperitoneal administration of minocycline significantly reduced the activation of microglial cells and the number of pERK-IR cells in Vc and Cl, and also significantly attenuated the development of mechanical allodynia. Furthermore, enhanced background activity and mechanical evoked responses of Vc wide dynamic range neurons in ION-CCI rats were significantly reversed following minocycline administration. These findings suggest that activation of microglial cells over a wide area of Vc and Cl is involved in the enhancement of Vc and Cl neuronal excitability in the early period after ION-CCI, resulting in the neuropathic pain in orofacial areas innervated by the injured as well as uninjured nerves. (C) 2012 Elsevier B.V. All rights reserved.

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