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Sertoli cell transplantation attenuates microglial activation and inhibits TRPC6 expression in neuropathic pain induced by spinal cord injury

Authors :
Behnaz, Rahimi
Abbas, Aliaghaei
Fatemeh, Ramezani
Zahra, Behroozi
Farinaz, Nasirinezhad
Source :
Physiology & Behavior. 251:113807
Publication Year :
2022
Publisher :
Elsevier BV, 2022.

Abstract

Cell therapy is a promising treatment method for relieving neuropathic pain caused by spinal cord injuries (SCI). Sertoli cells (SCs) are an attractive choice given their demonstrated secretion of growth factors and immunosuppressant effect. This study mechanistically characterizes the analgesic effect of SCs transplantation.The clip compression SCI model was carried out on the T12-T13 level in male Wistar rats. One-week post-SCI, SCs were transplanted into the site of injury. Animals underwent Basso, Beattie, and Bresnahan locomotor scoring, mechanical allodynia, and thermal hyperalgesia on a weekly basis for a duration of six weeks. Histological examination of the spinal cord and molecular evaluation of Iba-1, P2Y4, TRPC6, and P-mTOR were performed. SCs survival, measured by anti-Müllerian hormone expression in the spinal cord.Animals that received SCs transplantation showed improvement in motor function recovery and pain relief. Furthermore, a cavity was significantly decreased in the transplanted animals (p = 0.0024), the expression level of TRPC6 and caspase3 and the number of activated microglia decreased compared to the SCI animals, and p-mTOR and P2Y4R expression remarkably increased compared to the SCI group.SCs transplantation produces an analgesic effect which may represent a promising treatment for SCI-induced chronic pain.

Details

ISSN :
00319384
Volume :
251
Database :
OpenAIRE
Journal :
Physiology & Behavior
Accession number :
edsair.doi.dedup.....17937857af934601f891f14766becc41