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The Comparison between Conditioned Media and Serum-Free Media in Human Embryonic Stem Cell Culture and Differentiation

机译:人胚胎干细胞培养与分化条件培养基与无血清培养基的比较

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摘要

Human embryonic stem cells (hESCs) offer an inexhaustible supply of human somatic cell types through their ability to self-renew while retaining pluripotency. As such, hESC-derived cell types are important for applications ranging from in vitro modeling to therapeutic use. However, for their full potential to be realized, both the growth of the undifferentiated cells and their derivatives must be performed in defined culture conditions. Many research groups maintain hESCs using mouse embryonic fibroblasts (MEF) and MEF conditioned medium (CM). The use of murine systems to support hESCs has been imperative in developing hESC technology; however, they suffer from some major limitations including lack of definition, xenobiotic nature, batch-to-batch variation, and labor-intensive production. Therefore, hESC culture definition is essential if hESC lines, and their derivatives are to be quality assured and manufactured to GMP. We have initiated the process of standardizing hESC tissue culture and have employed two serum-free media: mTeSR (MT) and Stem Pro (SP). hESCs were maintained in a pluripotent state, for over 30 passages using MT and SP. Additionally, we present evidence that hESCs maintained in MT and SP generate equivalent levels of human hepatic endoderm as observed with CM. This data suggests that MT and SP are effective replacements for MEF-CM in hESC culture, contributing to the standardization of hESC in vitro models and ultimately their application.
机译:人类胚胎干细胞(hESCs)通过自我更新并保持多能性的能力,为人类体细胞类型提供了无穷无尽的供应。这样,hESC衍生的细胞类型对于从体外建模到治疗用途的各种应用都很重要。但是,要充分发挥其潜能,必须在规定的培养条件下进行未分化细胞及其衍生物的生长。许多研究小组使用小鼠胚胎成纤维细胞(MEF)和MEF条件培养基(CM)来维持hESC。在开发hESC技术中,必须使用鼠类系统来支持hESC。但是,它们受到一些主要限制,包括缺乏定义,异物性质,批次间的差异以及劳动密集型生产。因此,如果要保证hESC品系及其衍生物的质量并按照GMP生产,则hESC培养物的定义至关重要。我们已经启动了标准化hESC组织培养的过程,并采用了两种无血清培养基:mTeSR(MT)和Stem Pro(SP)。使用MT和SP将hESC维持在多能状态,持续30多次传代。此外,我们提供的证据表明,与CM相比,维持在MT和SP中的hESC产生了同等水平的人类肝内胚层。该数据表明MT和SP是hESC培养中MEF-CM的有效替代品,有助于hESC体外模型的标准化以及最终的应用。

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