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体外模拟输卵管液生成

Modelling oviduct fluid formation in vitro.

作者信息

Simintiras Constantine A, Fröhlich Thomas, Sathyapalan Thozhukat, Arnold Georg J, Ulbrich Susanne E, Leese Henry J, Sturmey Roger G S

机构信息

C Simintiras, Centre for Cardiovascular and Metabolic Research (CCMR), Hull York Medical School (HYMS), Kingston upon Hull, United Kingdom of Great Britain and Northern Ireland

T Fröhlich, Laboratory for Functional Genome Analysis (LAFUGA), LMU Munich, Munich, Germany.

出版信息

Reproduction. 2016 Oct 13. doi: 10.1530/REP-15-0508.

Abstract

Oviduct fluid is the microenvironment that supports early reproductive processes including fertilisation, embryo cleavage, and genome activation. However, the composition and regulation of this critical environment remains rather poorly defined. This study uses an in vitro preparation of the bovine oviduct epithelium, to investigate the formation and composition of in vitro derived oviduct fluid (ivDOF) within a controlled environment. We confirm the presence of oviduct specific glycoprotein 1 in ivDOF and show that the amino acid and carbohydrate content resembles that of previously reported in vivo data. In parallel, using a different culture system, a panel of oviduct epithelial solute carrier genes, and the corresponding flux of amino acids within ivDOF in response to steroid hormones were investigated. We next incorporated fibroblasts directly beneath the epithelium. This dual culture arrangement represents more faithfully the in vivo environment and impacts on ivDOF composition. Lastly, physiological and pathophysiological endocrine states were modelled and their impact on the in vitro oviduct preparation evaluated. These experiments help clarify the dynamic function of the oviduct in vitro and suggest a number of future research avenues, such as investigating epithelial-fibroblast interactions, probing the molecular aetiologies of subfertility, and optimising embryo culture media.

摘要

输卵管液是支持早期生殖过程(包括受精、胚胎分裂和基因组激活)的微环境。然而,这个关键环境的组成和调节仍相当不清楚。本研究使用牛输卵管上皮的体外制备物,在可控环境中研究体外衍生输卵管液(ivDOF)的形成和组成。我们证实了ivDOF中存在输卵管特异性糖蛋白1,并表明氨基酸和碳水化合物含量与先前报道的体内数据相似。同时,使用不同的培养系统,研究了一组输卵管上皮溶质载体基因以及ivDOF中氨基酸对类固醇激素反应的相应通量。接下来,我们将成纤维细胞直接置于上皮下方。这种双重培养安排更忠实地代表了体内环境,并影响ivDOF的组成。最后,模拟了生理和病理生理内分泌状态,并评估了它们对体外输卵管制备的影响。这些实验有助于阐明体外输卵管的动态功能,并提出了一些未来的研究途径,如研究上皮-成纤维细胞相互作用、探究亚生育的分子病因以及优化胚胎培养基。

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