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金雀异黄素穿过生物人工输卵管并改变分泌物成分。

Genistein crosses the bioartificial oviduct and alters secretion composition.

作者信息

Simintiras Constantine A, Sturmey Roger G

机构信息

Hull York Medical School (HYMS), University of Hull, Cottingham Road, Hull, HU6 7RX, UK.

Hull York Medical School (HYMS), University of Hull, Cottingham Road, Hull, HU6 7RX, UK.

出版信息

Reprod Toxicol. 2017 Aug;71:63-70. doi: 10.1016/j.reprotox.2017.04.010. Epub 2017 Apr 28.

Abstract

The dietary derived isoflavone and oestrogen analogue, genistein, is known to perturb fundamental reproductive events such as implantation and embryo cleavage. However the question of whether genistein is able to traverse the oviduct epithelial monolayer and impact oviduct fluid secretion remains unclear. This study tests these research questions using a bioartificial oviduct to show that genistein permeates the oviduct lumen in vitro with a biphasic (burst and plateau) kinetic profile, faster than spontaneous diffusion, and alters the amino acid composition of in vitro derived oviduct fluid (ivDOF) but not as an oestrogen analogue. In addition to offering insights into the potential mechanisms of these findings, this manuscript demonstrates the potential to use the bioartificial oviduct model to characterise the transport or barrier properties of the oviduct towards a range of circulating xenobiotics.

摘要

饮食来源的异黄酮和雌激素类似物染料木黄酮,已知会干扰诸如着床和胚胎分裂等基本生殖事件。然而,染料木黄酮是否能够穿过输卵管上皮单层并影响输卵管液分泌的问题仍不清楚。本研究使用生物人工输卵管来测试这些研究问题,结果表明染料木黄酮在体外以双相(突发和平台期)动力学特征渗透到输卵管腔中,速度比自发扩散快,并且会改变体外衍生的输卵管液(ivDOF)的氨基酸组成,但并非作为雌激素类似物起作用。除了深入了解这些发现的潜在机制外,本手稿还证明了使用生物人工输卵管模型来表征输卵管对一系列循环异源生物的转运或屏障特性的潜力。

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