为小鼠多能干细胞开发无血清化学培养基

Tomoka Katayama, Marina Takechi, Yamato Murata, Yuta Chigi, Shinpei Yamaguchi, Daiji Okamura
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摘要

小鼠胚胎干细胞(mESCs)已被广泛用作研究多能性基础生物学和开发细胞疗法的模型系统。传统上,mESC 是在补充胎牛血清(FBS)的培养基中培养的。然而,血清的化学成分并不一致,在重现性和研究特定成分的作用方面存在问题。虽然已有一些无血清培养基的报道,但这些培养基含有商业添加剂,其详细成分尚未公开。最近,我们开发了一种无血清培养基--DA-X 培养基,它可以维持多种黏附性癌系。在这项研究中,我们对 DA-X 培养基进行了改良,为幼稚 mESCs 建立了一种新型的无血清条件,其中所有成分均已化学定义并公开(DA-X-modified medium for robust growth of pluripotent stem cells:DARP培养基)。DARP 培养基完全支持畸胎瘤的正常转录组和分化潜能,并支持从囊胚中建立 mESCs,这些 mESCs 保留了所有三个生殖层的发育潜能,包括嵌合胚胎中的生殖细胞。用化学定义的 DA-X 培养基培养原始小鼠上胚层干细胞(mEpiSCs)的结果表明,原始状态的 mESCs 的稳健生长需要最佳量的胆固醇,而维持原始状态的 mEpiSCs 则不需要胆固醇。因此,这项研究提供了可靠、可重复的培养方法,用于研究在多种多能状态下调节自我更新和多能性的特定成分的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a chemically disclosed serum-free medium for mouse pluripotent stem cells
Mouse embryonic stem cells (mESCs) have been widely used as a model system to study the basic biology of pluripotency and to develop cell-based therapies. Traditionally, mESCs have been cultured in a medium supplemented with fetal bovine serum (FBS). However, serum with its inconsistent chemical composition has been problematic for reproducibility and for studying the role of specific components. While some serum-free media have been reported, these media contain commercial additives whose detailed components have not been disclosed. Recently, we developed a serum-free medium, DA-X medium, which can maintain a wide variety of adherent cancer lines. In this study, we modified the DA-X medium and established a novel serum-free condition for both naïve mESCs in which all components are chemically defined and disclosed (DA-X-modified medium for robust growth of pluripotent stem cells: DARP medium). The DARP medium fully supports the normal transcriptome and differentiation potential in teratoma and the establishment of mESCs from blastocysts that retain the developmental potential in all three germ layers, including germ cells in chimeric embryos. Utility of chemically defined DA-X medium for primed mouse epiblast stem cells (mEpiSCs) revealed that an optimal amount of cholesterol is required for the robust growth of naïve-state mESCs, but is dispensable for the maintenance of primed-state mEpiSCs. Thus, this study provides reliable and reproducible culture methods to investigate the role of specific components regulating self-renewal and pluripotency in a wide range of pluripotent states.
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