Kumar Manish, Tanwar Pradeep
Gynaecology Oncology Group, School of Biomedical Sciences and Pharmacy, University of Newcastle.
Gynaecology Oncology Group, School of Biomedical Sciences and Pharmacy, University of Newcastle;
J Vis Exp. 2017 Jan 13(119):55134. doi: 10.3791/55134.
Tubal morphogenesis is a fundamental requirement for the development of most mammalian organs, including the male reproductive system. The epididymis, an integral part of the male reproductive tract, is responsible for sperm storage, maturation, and transport. The adult epididymis is a highly coiled tube that develops from a simple and straight embryonic precursor known as Wolffian duct (WD). Proper coiling of the epididymis is essential for male fertility, as sperm in the testis are unable to fertilize an oocyte. However, the mechanism responsible for epididymal development and coiling remains unclear, partially due to the lack of whole organ culture and imaging methods. In this study, we describe an in vitro culture system and whole mount immunofluorescence protocol to better visualize the process of WD coiling and development, which may also be applied to study other tubular organs.
输卵管形态发生是包括雄性生殖系统在内的大多数哺乳动物器官发育的基本要求。附睾是雄性生殖道的一个组成部分,负责精子的储存、成熟和运输。成年附睾是一个高度盘绕的管道,由一个简单而笔直的胚胎前体——沃尔夫管(WD)发育而来。附睾的正常盘绕对雄性生育能力至关重要,因为睾丸中的精子无法使卵母细胞受精。然而,负责附睾发育和盘绕的机制仍不清楚,部分原因是缺乏全器官培养和成像方法。在本研究中,我们描述了一种体外培养系统和整体免疫荧光方案,以更好地观察WD盘绕和发育过程,该方案也可用于研究其他管状器官。