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人类许旺细胞的特性:体外培养和移植研究的启示。

The properties of human Schwann cells: Lessons from in vitro culture and transplantation studies.

机构信息

The Department of Neurological Surgery, Indiana University, Indianapolis, Indiana.

出版信息

Glia. 2020 Apr;68(4):797-810. doi: 10.1002/glia.23793. Epub 2020 Feb 6.

DOI:10.1002/glia.23793
PMID:32027424
Abstract

Human Schwann cells (hSCs) can be isolated directly from peripheral nerve and cultured using methods similar to those used for SCs from other species. Yet, important interspecies differences are revealed when the primary or expanded hSCs are compared to their nonhuman counterparts. This review addresses the special properties of nerve-derived hSCs that have resulted to date from both in vitro studies and in vivo research on cell transplantation in animal models and human subjects. A consensus has yet to emerge about the essential attributes of cultured normal hSCs. Thus, an emphasis is placed on the importance of validating hSC cultures by means of purity, identity, and biological activity to reliably use them as in vitro models of the SC phenotype and cell therapy products for injury repair. Combining traditional immunological methods, high-resolution omics approaches, and assorted cell-based assays is so far the best approach to unequivocally identify hSC populations obtained by direct isolation or derivation from stem cells. Special considerations are required to understand and manage the variability and heterogeneity proper of donor batches, as well as to evaluate risk factors. This is particularly important if the intended use of the hSCs is implantation in the human body, diagnosis of disease, or drug testing aimed at targeting any aspect of SC function in human patients. To conclude, in view of their unique properties, new concepts and methods are needed to better understand the biology of hSCs and exploit their full potential in basic science and regenerative medicine.

摘要

人许旺细胞 (hSCs) 可直接从周围神经分离出来,并采用类似于其他物种施万细胞的方法进行培养。然而,当原代或扩增的 hSCs 与非人类细胞相比时,会发现重要的种间差异。这篇综述介绍了迄今为止从体外研究和动物模型及人体细胞移植的体内研究中揭示的神经源性 hSCs 的特殊性质。对于培养的正常 hSCs 的基本属性尚未达成共识。因此,重点强调通过纯度、身份和生物活性来验证 hSC 培养物的重要性,以可靠地将其用作施万细胞表型的体外模型和用于损伤修复的细胞治疗产品。结合传统的免疫学方法、高分辨率组学方法和各种基于细胞的测定方法,迄今为止是明确鉴定通过直接分离或从干细胞衍生获得的 hSC 群体的最佳方法。需要特别考虑理解和管理供体批次的可变性和异质性,以及评估风险因素。如果 hSCs 的预期用途是植入人体、诊断疾病或进行药物测试以靶向人类患者中施万细胞功能的任何方面,这一点尤其重要。总之,鉴于其独特的性质,需要新的概念和方法来更好地理解 hSCs 的生物学,并在基础科学和再生医学中充分发挥其潜力。

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