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Purification and Characterization of Schwann Cells from Adult Human Skin and Nerve

机译:成年人类皮肤和神经中雪旺细胞的纯化和鉴定

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摘要

Despite its modest capacity for regeneration, peripheral nervous system injury often results in significant long-term disability. Supplementing peripheral nervous system injury with autologous Schwann cells (SCs) may serve to rejuvenate the postinjury environment to enhance regeneration and ultimately improve functional outcomes. However, human nerve-derived SC (hN-SC) collection procedures require invasive surgical resection. Here, we describe the characterization of SCs from adult human skin (hSk-SCs) of four male donors ranging between 27 and 46 years old. Within five weeks of isolating and culturing adherent mixed skin cells, we were able to obtain 3–5 million purified SCs. We found that hSk-SCs appeared transcriptionally indistinguishable from hN-SCs with both populations exhibiting expression of SC genes including: SOX10, SOX9, AP2A1, CDH19, EGR1, ETV5, PAX3, SOX2, CX32, DHH, NECL4, NFATC4, POU3F1, S100B, and YY1. Phenotypic analysis of hSk-SCs and hN-SCs cultures revealed highly enriched populations of SCs indicated by the high percentage of NES+ve, SOX10+ve, s100+ve and p75+ve cells, as well as the expression of a battery of other SC-associated proteins (PAX3, CDH19, ETV5, SOX2, POU3F1, S100B, EGR2, and YY1). We further show that both hSk-SCs and hN-SCs are capable of promoting axonal growth to similar degrees and that a subset of both associate with regenerating axons and form myelin following transplantation into the injured mouse sciatic nerve. Interestingly, although the majority of both hSk-SCs and hN-SCs maintained SOX10 immunoreactivity following transplant, only a subset of each activated the promyelinating factor, POU3F1, and were able to myelinate. Taken together, we demonstrate that adult hSk-SCs are genetically and phenotypically indistinguishable to hN-SCs.
机译:尽管其再生能力中等,但外周神经系统损伤通常会导致严重的长期残疾。自体雪旺氏细胞(SCs)补充周围神经系统损伤可能有助于恢复损伤后环境,从而增强再生能力并最终改善功能结局。但是,人类神经源性SC(hN-SC)收集程序需要侵入性手术切除。在这里,我们描述了四名年龄在27至46岁之间的男性供体的成年人类皮肤(hSk-SCs)的SC的特征。在分离和培养粘附的混合皮肤细胞的五周内,我们能够获得3-5百万个纯化的SC。我们发现hSk-SCs与hN-SCs在转录上没有区别,两个种群均显示SC基因的表达,包括:SOX10,SOX9,AP2A1,CDH19,EGR1,ETV5,PAX3,SOX2,CX32,DHH,NECL4,NFATC4,POU3F1,S100B和YY1。对hSk-SCs和hN-SCs培养物的表型分析显示,高浓度的NES + ve ,SOX10 + ve ,s100 + ve 和p75 + ve 细胞,以及一系列其他SC相关蛋白(PAX3,CDH19,ETV5,SOX2,POU3F1,S100B,EGR2和YY1)的表达。我们进一步显示,hSk-SCs和hN-SCs均能够促进轴突生长至相似程度,并且两者的一部分与再生轴突相关联,并在移植到受伤的小鼠坐骨神经后形成髓磷脂。有趣的是,尽管大多数hSk-SC和hN-SC都在移植后保持SOX10免疫反应性,但每个中只有一部分激活了髓鞘前因子POU3F1,并能够发生髓鞘形成。两者合计,我们证明成人hSk-SCs在遗传和表型上与hN-SCs不能区分。

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