人附睾和精液中的多元醇途径

Gilles Frenette, Michel Thabet, Robert Sullivan
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引用次数: 77

摘要

摘要:多醇途径涉及两种酶:醛糖还原酶还原山梨醇中的葡萄糖,然后由山梨醇脱氢酶氧化果糖。以前已经表明,这两种酶都存在于牛附睾中,在那里它们与称为附睾动力体的膜状囊泡有关。根据这些酶的分布,我们假设多元醇途径可以调节附睾转运过程中的精子活力。在本研究中,我们研究了人类精液和附睾中的多元醇途径,以确定精子成熟是否与这种糖途径有关。Western blot分析表明醛糖还原酶和山梨糖醇脱氢酶与人类射精精子和前列腺体有关。这些酶也与输精管结扎逆转手术中收集的附睾动力体有关。Western blot、Northern blot和逆转录聚合酶链反应分析显示,醛糖还原酶和山梨醇脱氢酶沿人附睾在转录和翻译水平上表达。不像在牛模型中发生的那样,这些酶沿人类外流管的分布是相当均匀的。免疫组织学研究和Western blot分析表明,附睾上皮分泌多元醇途径酶。这些结果表明多元醇途径在人类精子生理中起作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Polyol Pathway in Human Epididymis and Semen

Polyol Pathway in Human Epididymis and Semen

ABSTRACT: Two enzymes are involved in the polyol pathway: an aldose reductase that reduces glucose in sorbitol followed by its oxidation in fructose by sorbitol dehydrogenase. It has been previously shown that both enzymes are presented in the bovine epididymis, where they are associated with membranous vesicles called epididymosomes. Based on the distribution of these enzymes, it has been hypothesized that the polyol pathway can modulate sperm motility during the epididymal transit. In the present study, polyol pathway was investigated in semen and along the epididymis in humans in order to determine if sperm maturation can be associated with this sugar pathway. Western blot analysis shows that both aldose reductase and sorbitol dehydrogenase are associated with ejaculated spermatozoa and prostasomes in humans. These enzymes are also associated with epididymosomes collected during surgical vasectomy reversal. Western blot, Northern blot, and reverse transcription—polymerase chain reaction analysis show that aldose reductase and sorbitol dehydrogenase are expressed at the transcriptional and translational levels along the human epididymis. Unlike what occurs in the bovine model, distribution of these enzymes is rather uniform along the human excurrent duct. Immunohistological studies together with Western blot analysis performed on epididymosomes preparations indicate that the polyol pathway enzymes are secreted by the epididymal epithelium. These results indicate that the polyol pathway plays a role in human sperm physiology.

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来源期刊
Journal of andrology
Journal of andrology 医学-男科学
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