Influence of the ES-D3 Cell Differentiation and Cell Viability Rate by the 6 Essential Amino Acids Adding in the Minimum Essential Medium

K. Imai, Tatsuro Miyake, I. Tamura, Hiroki Ishikawa, T. Iseki, S. Morita, H. Sawai, T. Ohkubo, M. Shida, T. Nishikawa, Tomoharu Okamura, A. Tanaka, K. Suese
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引用次数: 2

Abstract

SYNOPSIS Although research on regenerative medicine using iPS cells has markedly progressed, no culture medium meeting the objective of studies on cell differentiation using iPS cells has been developed. The establishment of the in vitro cell growth method and development of MEM and DMEM as cell culture media have facilitated the stable growth of many types of cultured cell. These culture media are of marked historical value in cell culture methods, and they are used for the cell differentiation of iPS and ES cells without modification as the standard media. There are only a few reports providing a basis for the essential amino acid contents of these culture media. To develop a new culture medium for cell differentiation, we started a basic investigation of the essential amino acid contents using mouse-derived ES-D3 cells which do not require feeder cells. Dulbecco's Modified Eagle Medium (DMEM) is normally used for ES-D3 cell culture. The essential amino acid content of DMEM is higher than that of Minimum Essential Medium (MEM). Of the 7 essential amino acid contained in MEM, the contents of 6 amino acids are lower than those of DMEM excluding L-arginine. Thus, we investigated the influence of the 6 essential amino acids excluding L-arginine by adding them individually to MEM, and the viability and differentiation rate of ES-D3 cells were investigated. The addition of L-glutamine improved the cell viability and differentiation rate. It was clarified that the accumulation of data on the differentiation of various cells is necessary to determine the appropriate essential amino acid contents, aiming at the preparation of culture media for regenerative medicine.
在最低必需培养基中添加6种必需氨基酸对ES-D3细胞分化和细胞存活率的影响
摘要:虽然利用iPS细胞进行再生医学的研究取得了显著进展,但目前还没有开发出能够满足利用iPS细胞进行细胞分化研究的培养基。体外细胞生长方法的建立以及MEM和DMEM作为细胞培养基的开发,促进了多种培养细胞的稳定生长。这些培养基在细胞培养方法中具有显著的历史价值,它们作为标准培养基不经修饰,可用于iPS和ES细胞的细胞分化。只有少数报道为这些培养基的必需氨基酸含量提供了依据。为了开发一种新的细胞分化培养基,我们使用小鼠来源的ES-D3细胞,不需要饲养细胞,开始了必需氨基酸含量的基本研究。Dulbecco's Modified Eagle Medium (DMEM)通常用于ES-D3细胞培养。DMEM的必需氨基酸含量高于最低必需培养基(MEM)。MEM所含的7种必需氨基酸中,除l -精氨酸外,有6种氨基酸的含量低于DMEM。因此,我们研究了除l -精氨酸外的6种必需氨基酸单独加入MEM对ES-D3细胞的影响,并研究了ES-D3细胞的存活率和分化率。l -谷氨酰胺的添加提高了细胞活力和分化率。阐明了为制备再生医学用培养基,必须积累各种细胞的分化数据,确定合适的必需氨基酸含量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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