Electroacupuncture facilitates the integration of a grafted TrkC‐modified mesenchymal stem cell‐derived neural network into transected spinal cord in rats via increasing neurotrophin‐3

神经营养素 脊髓 原肌球蛋白受体激酶C 间充质干细胞 电针 医学 神经营养素 神经干细胞 神经科学 干细胞 脑源性神经营养因子 内科学 生物 病理 细胞生物学 神经营养因子 血小板源性生长因子受体 生长因子 受体 替代医学 针灸科
作者
Yang Yang,Haoyu Xu,Qingwen Deng,Guohui Wu,Xiang Zeng,Hui Jin,Laijian Wang,Bi‐Qin Lai,Ge Li,Yuan‐Huan Ma,Bin Jiang,Jingwen Ruan,Ya‐Qiong Wang,Ying Ding,Yuan‐Shan Zeng
出处
期刊:CNS Neuroscience & Therapeutics [Wiley]
卷期号:27 (7): 776-791 被引量:36
标识
DOI:10.1111/cns.13638
摘要

Abstract Aims This study was aimed to investigate whether electroacupuncture (EA) would increase the secretion of neurotrophin‐3 (NT‐3) from injured spinal cord tissue, and, if so, whether the increased NT‐3 would promote the survival, differentiation, and migration of grafted tyrosine kinase C ( TrkC )‐modified mesenchymal stem cell (MSC)‐derived neural network cells. We next sought to determine if the latter would integrate with the host spinal cord neural circuit to improve the neurological function of injured spinal cord. Methods After NT‐3 ‐modified Schwann cells (SCs) and TrkC ‐modified MSCs were co‐cultured in a gelatin sponge scaffold for 14 days, the MSCs differentiated into neuron‐like cells that formed a MSC‐derived neural network (MN) implant. On this basis, we combined the MN implantation with EA in a rat model of spinal cord injury (SCI) and performed immunohistochemical staining, neural tracing, electrophysiology, and behavioral testing after 8 weeks. Results Electroacupuncture application enhanced the production of endogenous NT‐3 in damaged spinal cord tissues. The increase in local NT‐3 production promoted the survival, migration, and maintenance of the grafted MN, which expressed NT‐3 high‐affinity TrkC. The combination of MN implantation and EA application improved cortical motor‐evoked potential relay and facilitated the locomotor performance of the paralyzed hindlimb compared with those of controls. These results suggest that the MN was better integrated into the host spinal cord neural network after EA treatment compared with control treatment. Conclusions Electroacupuncture as an adjuvant therapy for TrkC ‐modified MSC‐derived MN, acted by increasing the local production of NT‐3, which accelerated neural network reconstruction and restoration of spinal cord function following SCI.
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