植物雌激素的生殖作用

PhD Patricia L. Whitten (Associate Professor), MD, PhD Frederick Naftolin (Chair and Professor)
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引用次数: 94

摘要

本章综述了植物雌激素的生殖作用、比较作用机制、剂量-反应关系和人体暴露。尽管植物雌激素具有广泛的生物化学作用,但体外试验表明,植物雌激素更可能通过受体介导的机制而不是通过酶抑制发挥作用。在动物实验研究中,异黄酮类化合物对生殖道上皮细胞增殖和退情的作用已得到充分证实。然而,到目前为止,以大豆为基础的饮食通常不能在去卵巢的大鼠和猴子或更年期妇女中产生上皮细胞增殖,而且临床研究也提供了大豆异黄酮对人类月经周期或绝经后促性腺激素分泌的影响的混合证据。在绝经期妇女中使用植物雌激素作为雌激素替代疗法已经引起了相当大的兴趣。初步临床试验报告的结果好坏参半,目前尚不清楚异黄酮在目前推荐剂量下是否能显著减轻更年期症状。最近一些口服异黄酮补充剂的试验报告显示,可以减少潮热、阴道干燥和乳房疼痛。异黄酮对乳腺癌的保护作用的临床证据也有限。与其他雌激素物质一样,异黄酮类化合物在啮齿动物发育模型中是有效的分化剂。由于某些婴儿配方奶粉中含有高浓度的异黄酮,这些作用对人类的影响令人感兴趣。因此,有些人可能在婴儿期比在其他生命阶段接触到更多的植物雌激素。在撰写本文时,没有此类接触的不良影响的报告。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
8Reproductive actions of phytoestrogens

This chapter reviews the reproductive actions of phytoestrogens, comparing mechanisms of action, dose-response relationships, and human exposures. Although a wide range of biochemical actions have been reported for phytoestrogens, in vitro tests suggest that phytoestrogens may be more likely to act through receptor-mediated mechanisms than through enzyme inhibition.

Epithelial cell proliferation in the reproductive tract and anestrus are well-documented actions of isoflavonoids in experimental studies of animals. However, thus far, soy-based diets have generally failed to produce epithelial proliferation in ovariectomized rats and monkeys or menopausal women, and clinical studies have produced mixed evidence for effects of soy isoflavones on the human menstrual cycle or post-menopausal gonadotropin secretion. There has been considerable interest in the use of phytoestrogens as oestrogen replacement therapy in menopausal women. Reported results of initial clinical trials have been mixed, and it is unclear whether isoflavones in presently advised doses can substantially reduce menopausal symptoms. Some recent trials with oral isoflavone supplements report reductions in hot flushes, vaginal dryness, and breast pain. There is also limited clinical evidence for protective actions of isoflavones in mammary cancer.

Like other oestrogenic substances, the isoflavonoids are effective differentiating agentsin rodent models of development. The consequences of these actions for humans is of interest due to the high concentrations of isoflavonoids in some infant formulae. Thus, it is likely that some humans may experience greater exposure to phytoestrogens in infancy than in any other lifestage. At the time of writing, no ill effects of such exposure have been reported.

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