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通过代谢糖基工程提高人脂肪干细胞向雪旺细胞的分化。

Improving Schwann Cell Differentiation from Human Adipose Stem Cells with Metabolic Glycoengineering.

机构信息

Department of Neurosurgery, University of Maryland School of Medicine, 10 South Pine Street, MST 823, Baltimore, MD 21201, USA.

Department of Biomedical Engineering, The Johns Hopkins School of Medicine, Baltimore, MD 21205, USA.

出版信息

Cells. 2023 Apr 19;12(8):1190. doi: 10.3390/cells12081190.

Abstract

Schwann cells (SCs) are myelinating cells that promote peripheral nerve regeneration. When nerve lesions form, SCs are destroyed, ultimately hindering nerve repair. The difficulty in treating nerve repair is exacerbated due to SC's limited and slow expansion capacity. Therapeutic use of adipose-derived stem cells (ASCs) is emerging in combating peripheral nerve injury due to these cells' SC differentiation capability and can be harvested easily in large numbers. Despite ASC's therapeutic potential, their transdifferentiation period typically takes more than two weeks. In this study, we demonstrate that metabolic glycoengineering (MGE) technology enhances ASC differentiation into SCs. Specifically, the sugar analog AcManNTProp (TProp), which modulates cell surface sialylation, significantly improved ASC differentiation with upregulated SC protein S100β and p75NGFR expression and elevated the neurotrophic factors nerve growth factor beta (NGFβ) and glial cell-line-derived neurotrophic factor (GDNF). TProp treatment remarkably reduced the SC transdifferentiation period from about two weeks to two days in vitro, which has the potential to improve neuronal regeneration and facilitate future use of ASCs in regenerative medicine.

摘要

许旺细胞(SCs)是促进周围神经再生的髓鞘细胞。当神经损伤形成时,SCs 会被破坏,最终阻碍神经修复。SCs 的有限和缓慢扩增能力加剧了神经修复治疗的难度。脂肪来源干细胞(ASCs)由于具有SCs 分化能力,并且可以大量容易地收获,因此在对抗周围神经损伤方面的治疗用途正在兴起。尽管 ASC 具有治疗潜力,但它们的转分化时间通常需要两周以上。在这项研究中,我们证明代谢糖基工程(MGE)技术增强了 ASC 向 SC 的分化。具体来说,糖类似物 AcManNTProp(TProp)调节细胞表面唾液酸化,可显著提高 SC 蛋白 S100β 和 p75NGFR 表达的上调,提高神经营养因子神经生长因子β(NGFβ)和胶质细胞系源性神经营养因子(GDNF)水平。TProp 处理可将 SC 的体外转分化时间从大约两周缩短至两天,这有可能改善神经元再生,并促进未来将 ASC 应用于再生医学。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66ed/10136940/e22b447feae3/cells-12-01190-g001.jpg

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