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壳聚糖降解产物通过 miR-27a/FOXO1 轴刺激许旺细胞增殖促进神经再生。

Chitosan Degradation Products Promote Nerve Regeneration by Stimulating Schwann Cell Proliferation via miR-27a/FOXO1 Axis.

机构信息

Key Laboratory of Neuroregeneration, Nantong University, 19 Qixiu Road, Nantong, 226001, China.

Co-innovation Center of Neuroregeneration, Nantong, 226001, Jiangsu Province, China.

出版信息

Mol Neurobiol. 2016 Jan;53(1):28-39. doi: 10.1007/s12035-014-8968-2. Epub 2014 Nov 18.

Abstract

Natural polysaccharides are biomaterials widely used for constructing scaffolds in tissue engineering. While natural polysaccharides have been shown to robustly promote tissue regeneration, the underlying molecular mechanism remains largely unknown. Here, we show that chitooligosaccharides (COS), the intermediate products of chitosan degradation, stimulate peripheral nerve regeneration in rats. Our experiment also shows that COS stimulate the proliferation of Schwann cells (SCs) during nerve regeneration. By analyzing the transcriptome and gene regulatory network, we identified the miR-27a/FOXO1 axis as the main signaling pathway for mediating the proliferative effects of COS on SCs. COS increase the expression level of miR-27a and cause a reduction of FOXO1, which subsequently accelerates the cell cycle and stimulates SC proliferation to stimulate nerve regeneration. These findings define a basic pathway for oligosaccharides-mediated cell proliferation and reveal a novel aspect of polysaccharide biomaterials in tissue engineering.

摘要

天然多糖是广泛用于组织工程构建支架的生物材料。虽然天然多糖已被证明能强有力地促进组织再生,但其中的分子机制在很大程度上仍是未知的。在这里,我们展示了壳寡糖(COS),即壳聚糖降解的中间产物,可刺激大鼠周围神经再生。我们的实验还表明,COS 在神经再生过程中刺激施万细胞(SCs)的增殖。通过分析转录组和基因调控网络,我们确定了 miR-27a/FOXO1 轴作为介导 COS 对 SCs 增殖作用的主要信号通路。COS 增加了 miR-27a 的表达水平,并导致 FOXO1 的减少,这继而加速了细胞周期并刺激 SC 增殖,从而刺激神经再生。这些发现定义了一个寡糖介导的细胞增殖的基本途径,并揭示了多糖生物材料在组织工程中的一个新方面。

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