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Synergistic Effects of Bone Mesenchymal Stem Cells and Chondroitinase ABC on Nerve Regeneration After Acellular Nerve Allograft in Rats
被引:0
|作者:
Ying Wang
Hua Jia
Wen-Yuan Li
Xiao-Jie Tong
Gui-Bo Liu
Si-Wen Kang
机构:
[1] China Medical University,Department of Anatomy, College of Basic Medical Sciences
[2] Mudanjiang College of Medicine,Departments of Anatomy
[3] Ningxia Medical University,Department of Anatomy, College of Basic Medical Science
来源:
Cellular and Molecular Neurobiology
|
2012年
/
32卷
关键词:
Chondroitinase ABC;
Bone mesenchymal stem cells;
Peripheral nerve regeneration;
Acellular nerve allograft;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
This study aimed to evaluate whether combination therapy of bone marrow stromal cells (BMSCs) transplantation and chondroitinase ABC (ChABC) treatment further enhances axonal regeneration and functional recovery after acellular nerve allograft repair of the sciatic nerve gap in rats. Eight Sprague–Dawley rats were used as nerve donors, and 32 Wistar rats were randomly divided into four groups: Group I: acellular rat sciatic nerve (ARSN) group; Group II: ChABC treatment; Group III: BMSCs transplantation; and Group IV: ChABC treatment and BMSCs transplantation. The results showed that compared with ARSN control group, BMSC transplantation promoted axonal regeneration, the secretion of neural trophic factors NGF, BDNF and axon angiogenesis in nerve graft. ChABC treatment degraded chondroitin sulfate proteoglycans in ARSN in vitro and in vivo and improved BMSCs survival in ARSN. The combination therapy caused much better beneficial effects evidenced by increasing sciatic function index, nerve conduction velocity, restoration rate of tibialis anterior wet muscle weight, and myelinated nerve number, but did not further boost the therapeutic effects on neurotrophic factor production, axon angiogenesis, and sensory functional recovery by BMSC transplantation. Taken together, for the first time, we demonstrate the synergistic effects of BMSC transplantation and BMSCs treatment on peripheral nerve regeneration, and our findings may help establish novel strategies for cell transplantation therapy for peripheral nerve injury.
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页码:361 / 371
页数:10
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