| Literature DB >> 35357926 |
Keita Kohno1,2, Ryoji Shirasaka2, Kohei Yoshihara2, Satsuki Mikuriya1, Kaori Tanaka3, Keiko Takanami4,5, Kazuhide Inoue6, Hirotaka Sakamoto4, Yasuyuki Ohkawa3, Takahiro Masuda1,2, Makoto Tsuda1,2.
Abstract
Neuropathic pain is often caused by injury and diseases that affect the somatosensory system. Although pain development has been well studied, pain recovery mechanisms remain largely unknown. Here, we found that CD11c-expressing spinal microglia appear after the development of behavioral pain hypersensitivity following nerve injury. Nerve-injured mice with spinal CD11c+ microglial depletion failed to recover spontaneously from this hypersensitivity. CD11c+ microglia expressed insulin-like growth factor-1 (IGF1), and interference with IGF1 signaling recapitulated the impairment in pain recovery. In pain-recovered mice, the depletion of CD11c+ microglia or the interruption of IGF1 signaling resulted in a relapse in pain hypersensitivity. Our findings reveal a mechanism for the remission and recurrence of neuropathic pain, providing potential targets for therapeutic strategies.Entities:
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Year: 2022 PMID: 35357926 DOI: 10.1126/science.abf6805
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 47.728