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Transplantation of neural stem progenitor cells from different sources for severe spinal cord injury repair in rat

Authors :
Xu, Bai
Yin, Man
Yang, Yaming
Zou, Yunlong
Liu, Wenbin
Qiao, Lianyong
Zhang, Jixiang
Wang, Zhan
Wu, Yayu
Shen, He
Sun, Minghan
Liu, Weiyuan
Xue, Weiwei
Fan, Yongheng
Zhang, Qi
Chen, Bing
Wu, Xianming
Shi, Ya
Lu, Falong
Zhao, Yannan
Xiao, Zhifeng
Dai, Jianwu
Source :
Bioactive Materials; May 2023, Vol. 23 Issue: 1 p300-313, 14p
Publication Year :
2023

Abstract

Neural stem progenitor cell (NSPC) transplantation has been regarded as a promising therapeutic method for spinal cord injury (SCI) repair. However, different NSPCs may have different therapeutic effects, and it is therefore important to identify the optimal NSPC type. In our study, we compared the transcriptomes of human fetal brain-derived NSPCs (BNSPCs), spinal cord-derived NSPCs (SCNSPCs) and H9 embryonic stem-cell derived NSPCs (H9–NSPCs) in vitroand subsequently we transplanted each NSPC type on a collagen scaffold into a T8-9 complete SCI rat model in vivo. In vitrodata showed that SCNSPCs had more highly expressed genes involved in nerve-related functions than the other two cell types. In vivo, compared with BNSPCs and H9–NSPCs, SCNSPCs exhibited the best therapeutic effects; in fact, SCNSPCs facilitated electrophysiological and hindlimb functional recovery. This study demonstrates that SCNSPCs may be an appropriate candidate cell type for SCI repair, which is of great clinical significance.

Details

Language :
English
ISSN :
2452199X
Volume :
23
Issue :
1
Database :
Supplemental Index
Journal :
Bioactive Materials
Publication Type :
Periodical
Accession number :
ejs61887518
Full Text :
https://doi.org/10.1016/j.bioactmat.2022.11.008