Conditioned medium from human dental pulp stem cells treats spinal cord injury by inhibiting microglial pyroptosis

上睑下垂 牙髓干细胞 脊髓损伤 干细胞 小胶质细胞 医学 脊髓 牙髓(牙) 细胞生物学 病理 免疫学 炎症 生物 炎症体 精神科
作者
Tao Liu,Ziqian Ma,Liang Liu,Yilun Pei,Qichao Wu,Songjie Xu,Yadong Liu,Nan Ding,Yun Guan,Yan Zhang,Xueming Chen
出处
期刊:Neural Regeneration Research [Medknow]
卷期号:19 (5): 1105-1111 被引量:14
标识
DOI:10.4103/1673-5374.385309
摘要

Abstract JOURNAL/nrgr/04.03/01300535-202405000-00041/inline-graphic1/v/2023-09-28T063346Z/r/image-tiff Human dental pulp stem cell transplantation has been shown to be an effective therapeutic strategy for spinal cord injury. However, whether the human dental pulp stem cell secretome can contribute to functional recovery after spinal cord injury remains unclear. In the present study, we established a rat model of spinal cord injury based on impact injury from a dropped weight and then intraperitoneally injected the rats with conditioned medium from human dental pulp stem cells. We found that the conditioned medium effectively promoted the recovery of sensory and motor functions in rats with spinal cord injury, decreased expression of the microglial pyroptosis markers NLRP3, GSDMD, caspase-1, and interleukin-1β, promoted axonal and myelin regeneration, and inhibited the formation of glial scars. In addition, in a lipopolysaccharide-induced BV2 microglia model, conditioned medium from human dental pulp stem cells protected cells from pyroptosis by inhibiting the NLRP3/caspase-1/interleukin-1β pathway. These results indicate that conditioned medium from human dental pulp stem cells can reduce microglial pyroptosis by inhibiting the NLRP3/caspase-1/interleukin-1β pathway, thereby promoting the recovery of neurological function after spinal cord injury. Therefore, conditioned medium from human dental pulp stem cells may become an alternative therapy for spinal cord injury.
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