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多能血管干细胞有助于周围神经的神经血管再生。

Multipotent vascular stem cells contribute to neurovascular regeneration of peripheral nerve.

机构信息

Department of Bioengineering, University of California, Berkeley, 94720, USA.

Division of Plastic and Reconstructive Surgery, Department of Surgery, National Cheng Kung University Hospital, College of Medicine, National Cheng Kung University, Tainan, 70456, Taiwan.

出版信息

Stem Cell Res Ther. 2019 Aug 3;10(1):234. doi: 10.1186/s13287-019-1317-7.

Abstract

BACKGROUND

Neurovascular unit restoration is crucial for nerve regeneration, especially in critical gaps of injured peripheral nerve. Multipotent vascular stem cells (MVSCs) harvested from an adult blood vessel are involved in vascular remodeling; however, the therapeutic benefit for nerve regeneration is not clear.

METHODS

MVSCs were isolated from rats expressing green fluorescence protein (GFP), expanded, mixed with Matrigel matrix, and loaded into the nerve conduits. A nerve autograft or a nerve conduit (with acellular matrigel or MVSCs in matrigel) was used to bridge a transected sciatic nerve (10-mm critical gap) in rats. The functional motor recovery and cell fate in the regenerated nerve were investigated to understand the therapeutic benefit.

RESULTS

MVSCs expressed markers such as Sox 17 and Sox10 and could differentiate into neural cells in vitro. One month following MVSC transplantation, the compound muscle action potential (CMAP) significantly increased as compared to the acellular group. MVSCs facilitated the recruitment of Schwann cell to regenerated axons. The transplanted cells, traced by GFP, differentiated into perineurial cells around the bundles of regenerated myelinated axons. In addition, MVSCs enhanced tight junction formation as a part of the blood-nerve barrier (BNB). Furthermore, MVSCs differentiated into perivascular cells and enhanced microvessel formation within regenerated neurovascular bundles.

CONCLUSIONS

In rats with peripheral nerve injuries, the transplantation of MVSCs into the nerve conduits improved the recovery of neuromuscular function; MVSCs differentiated into perineural cells and perivascular cells and enhanced the formation of tight junctions in perineural BNB. This study demonstrates the in vivo therapeutic benefit of adult MVSCs for peripheral nerve regeneration and provides insight into the role of MVSCs in BNB regeneration.

摘要

背景

神经血管单元的修复对于神经再生至关重要,尤其是在受伤的周围神经的关键间隙中。从成年血管中采集的多能血管干细胞(MVSCs)参与血管重塑;然而,其对神经再生的治疗益处尚不清楚。

方法

从表达绿色荧光蛋白(GFP)的大鼠中分离 MVSCs,进行扩增,与 Matrigel 基质混合,并装入神经导管中。将神经自体移植物或神经导管(含有细胞外基质或 MVSCs 在基质中的神经导管)用于桥接大鼠的横断坐骨神经(10mm 关键间隙)。研究了再生神经中的功能运动恢复和细胞命运,以了解治疗益处。

结果

MVSCs 表达 Sox17 和 Sox10 等标记物,并可在体外分化为神经细胞。与无细胞组相比,MVSC 移植后 1 个月,复合肌肉动作电位(CMAP)显著增加。MVSCs 促进施万细胞募集到再生轴突。移植细胞,由 GFP 追踪,分化为再生有髓轴突束周围的神经外膜细胞。此外,MVSCs 增强了紧密连接的形成,作为血神经屏障(BNB)的一部分。此外,MVSCs 分化为血管周细胞,并增强了再生神经血管束内微血管的形成。

结论

在患有周围神经损伤的大鼠中,将 MVSCs 移植到神经导管中可改善神经肌肉功能的恢复;MVSCs 分化为神经外膜细胞和血管周细胞,并增强神经外膜 BNB 中紧密连接的形成。这项研究证明了成年 MVSCs 对周围神经再生的体内治疗益处,并深入了解了 MVSCs 在 BNB 再生中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bad/6679458/fc870029b590/13287_2019_1317_Fig1_HTML.jpg

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