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芯片上带有微孔膜支撑的子宫内膜细胞的单个胚胎共培养。

On-chip single embryo coculture with microporous-membrane-supported endometrial cells.

机构信息

Institute of Industrial Science, University of Tokyo, Tokyo 153-8505, Japan.

出版信息

IEEE Trans Nanobioscience. 2009 Dec;8(4):318-24. doi: 10.1109/TNB.2009.2035275.

Abstract

In vitro culture (IVC) of the mammalian embryo is an essential technique in reproductive technology and other related life science disciplines. Although embryos are usually cultured in groups, a single embryo culture has been highly desired for IVC to investigate developmental processes. In this study, we proposed and developed the first single embryo coculture device, which allows making an array of a single embryo coculture with endometrial cells by controlling the culture environment in a microfluidic device. To realize this concept, we investigated three key issues: selection of a culture medium for the embryo coculture with endometrial cells using a mouse embryo and endometrial cells, evaluation of an on-microporous-membrane coculture of endometrial cells and an embryo to control the polarization of endometrial cells on the membrane, and evaluation of the coculture of endometrial cells and the embryo in the microfluidic device. We successfully obtained an array of a single coculture of embryo with endometrial cells in a microfluidic device. This concept will open and enhance the management of an individual embryo for assisted reproductive technology, livestock breeding, and fundamental stage research by further development.

摘要

哺乳动物胚胎的体外培养(IVC)是生殖技术和其他相关生命科学领域的一项重要技术。尽管胚胎通常在群体中进行培养,但为了研究发育过程,人们一直高度期望进行单个胚胎培养。在这项研究中,我们提出并开发了第一个单个胚胎共培养装置,该装置允许通过在微流控装置中控制培养环境来制作具有子宫内膜细胞的单个胚胎共培养阵列。为了实现这一概念,我们研究了三个关键问题:使用小鼠胚胎和子宫内膜细胞选择胚胎与子宫内膜细胞共培养的培养基,评估在微孔膜上进行子宫内膜细胞和胚胎的共培养以控制子宫内膜细胞在膜上的极化,以及评估在微流控装置中进行的子宫内膜细胞和胚胎的共培养。我们成功地在微流控装置中获得了单个胚胎与子宫内膜细胞的共培养阵列。通过进一步开发,这一概念将为辅助生殖技术、畜牧业和基础阶段研究中的个体胚胎管理开辟并增强新途径。

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