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产生诱导多能干细胞来源的间充质干细胞的方法:来自诱导多能干细胞的间充质干细胞。

Methods to produce induced pluripotent stem cell-derived mesenchymal stem cells: Mesenchymal stem cells from induced pluripotent stem cells.

作者信息

Dupuis Victoria, Oltra Elisa

机构信息

Faculté des Sciences et d'Ingénierie, Sorbonne Université, Paris 75252, France.

Department of Pathology, Universidad Católica de Valencia San Vicente Mártir, Valencia 46001, Spain.

出版信息

World J Stem Cells. 2021 Aug 26;13(8):1094-1111. doi: 10.4252/wjsc.v13.i8.1094.

Abstract

Mesenchymal stem cells (MSCs) have received significant attention in recent years due to their large potential for cell therapy. Indeed, they secrete a wide variety of immunomodulatory factors of interest for the treatment of immune-related disorders and inflammatory diseases. MSCs can be extracted from multiple tissues of the human body. However, several factors may restrict their use for clinical applications: the requirement of invasive procedures for their isolation, their limited numbers, and their heterogeneity according to the tissue of origin or donor. In addition, MSCs often present early signs of replicative senescence limiting their expansion and their therapeutic capacity . Due to the clinical potential of MSCs, a considerable number of methods to differentiate induced pluripotent stem cells (iPSCs) into MSCs have emerged. iPSCs represent a new reliable, unlimited source to generate MSCs (MSCs derived from iPSC, iMSCs) from homogeneous and well-characterized cell lines, which would relieve many of the above mentioned technical and biological limitations. Additionally, the use of iPSCs prevents some of the ethical concerns surrounding the use of human embryonic stem cells. In this review, we analyze the main current protocols used to differentiate human iPSCs into MSCs, which we classify into five different categories: MSC Switch, Embryoid Body Formation, Specific Differentiation, Pathway Inhibitor, and Platelet Lysate. We also evaluate common and method-specific culture components and provide a list of positive and negative markers for MSC characterization. Further guidance on material requirements to produce iMSCs with these methods and on the phenotypic features of the iMSCs obtained is added. The information may help researchers identify protocol options to design and/or refine standardized procedures for large-scale production of iMSCs fitting clinical demands.

摘要

近年来,间充质干细胞(MSCs)因其在细胞治疗方面的巨大潜力而备受关注。事实上,它们分泌多种免疫调节因子,对治疗免疫相关疾病和炎症性疾病具有重要意义。MSCs可以从人体的多个组织中提取。然而,有几个因素可能会限制它们在临床应用中的使用:分离它们需要侵入性操作、数量有限以及根据来源组织或供体存在异质性。此外,MSCs常常呈现出复制性衰老的早期迹象,限制了它们的扩增和治疗能力。由于MSCs的临床潜力,大量将诱导多能干细胞(iPSCs)分化为MSCs的方法应运而生。iPSCs代表了一种新的可靠、无限的来源,可从同质且特征明确的细胞系中生成MSCs(源自iPSC的MSCs,即iMSCs),这将缓解上述许多技术和生物学限制。此外,使用iPSCs避免了围绕人类胚胎干细胞使用的一些伦理问题。在本综述中,我们分析了目前用于将人类iPSCs分化为MSCs的主要方案,我们将其分为五个不同类别:MSC转换、胚状体形成、特异性分化、信号通路抑制剂和血小板裂解物。我们还评估了常见的和特定方法的培养成分,并提供了用于MSCs鉴定的阳性和阴性标志物列表。此外,还添加了关于使用这些方法生产iMSCs的材料要求以及所获得的iMSCs的表型特征的进一步指导。这些信息可能有助于研究人员确定方案选项,以设计和/或完善符合临床需求的大规模生产iMSCs的标准化程序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f3e/8422924/ddf5ecbf449a/WJSC-13-1094-g001.jpg

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