EGFP转基因小鼠胚胎性腺/中肾共培养体系的建立。

Journal of Experimental Zoology Pub Date : 2000-02-15
K Nishino, M Kato, K Yokouchi, K Yamanouchi, K Naito, H Tojo
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引用次数: 0

摘要

在发育中的小鼠胚胎中,支持细胞、间质细胞和精索在XY性腺中分化。在雄性性腺精索形成的发育阶段,中肾细胞向性腺的迁移是必需的。在以前的实验中,器官共培养系统已被用于检查形态发育性腺。然而,在该系统中用于固定和染色性腺/中肾复合物以供检查的过程中,无法观察到细胞迁移的动力学和迁移细胞的特征。在本研究中,我们建立了一个改进的器官共培养系统,利用转基因小鼠无处不在地表达增强型绿色荧光蛋白(EGFP)。在这个系统中,在性腺/中肾复合体中可以观察到雄性特异性迁移的时间依赖性形态学变化。细胞在共培养20小时左右开始迁移,25小时开始扩散,在共培养45小时迁移细胞数量增加。共培养结束时未发现退行性改变。我们的结果表明,本共培养系统对于研究细胞在性腺发育过程中的迁移机制和迁移细胞的特性是非常有用的。[j] .中国生物医学工程学报,2006,31(2):379 - 379。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Establishment of fetal gonad/mesonephros coculture system using EGFP transgenic mice.

In developing mouse embryos, the Sertoli cells, Leydig cells, and seminiferous cords are differentiated in the XY gonads. The migration of mesonephric cells into the gonads is required during the developmental stage for seminiferous cord formation in the male gonads. In previous experiments, an organ coculture system has been used to examine morphologically developing gonads. However, by the process used in this system for fixing and staining the gonad/mesonephros complexes for examination, the kinetics of cell migration and the character of migrating cells cannot be observed. In the present study, we established an improved organ coculture system, using transgenic mice ubiquitously expressing Enhanced Green Fluorescent Protein (EGFP). In this system, time-dependent morphological changes in male-specific migration were observable in the gonad/mesonephros complex. The cell migration occurred at around 20 hr of coculture and began to spread at 25 hr with increases in the number of migrating cells occurring at 45 hr of coculture. No degenerative changes were detected at the end of coculture. Our results indicate that the present coculture system is very useful for investigating the mechanism of cell migration, as well as the characteristics of the migrating cells, in developing gonads. J. Exp. Zool. 286:320-327, 2000.

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