山奈酚在去卵巢大鼠中表现出孕激素作用。

May Fern Toh, Emma Mendonca, Sharon L Eddie, Michael P Endsley, Daniel D Lantvit, Pavel A Petukhov, Joanna E Burdette
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引用次数: 24

摘要

目的:黄体酮(P4)在妇女健康中起着核心作用。合成黄体酮在临床上用于激素替代疗法(HRT)、口服避孕药以及子宫内膜异位症和不孕症的治疗。不幸的是,合成黄体酮有副作用,包括心血管疾病和乳腺癌。植物性膳食补充剂被广泛用于缓解各种妇科问题,但很少有研究表明,天然化合物具有结合和激活孕激素受体(PR)的能力。山奈酚是一种类黄酮,在体外作为非甾体选择性孕酮受体调节剂(SPRM)。本研究探讨山奈酚在去卵巢大鼠子宫中的分子和生理作用。方法:由于染料木素是一种植物雌激素,先前已被证明可以增加子宫重量和增殖,因此我们研究了山奈酚阻断染料木素在子宫中的作用的能力。通过组织学分析和qPCR基因诱导实验,完成了pr调控靶点Areg和Hand2的增殖、类固醇受体表达和诱导分析。此外,完成山奈酚对PR的硅结合分析,并在体外测定其对雌激素和雄激素受体信号的激活。结果:分子对接分析证实山奈酚的位姿与占据PRA的配体结合口袋一致。山奈酚诱导去卵巢大鼠子宫中PR调控转录靶点的表达,包括Hand2和Areg。与黄体酮类活性一致,山奈酚能减弱染料木黄酮诱导的子宫腔上皮增生,但不增加子宫重量。山奈酚在体外和体内均不下调PR表达,也不激活雌激素和雄激素受体。结论:综上所述,山奈酚是一种独特的天然PR调节剂,在体外和体内激活PR信号而不引发PR降解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Kaempferol Exhibits Progestogenic Effects in Ovariectomized Rats.

Objective: Progesterone (P4) plays a central role in women's health. Synthetic progestins are used clinically in hormone replacement therapy (HRT), oral contraceptives, and for the treatment of endometriosis and infertility. Unfortunately, synthetic progestins are associated with side effects, including cardiovascular disease and breast cancer. Botanical dietary supplements are widely consumed for the alleviation of a variety of gynecological issues, but very few studies have characterized natural compounds in terms of their ability to bind to and activate progesterone receptors (PR). Kaempferol is a flavonoid that functions as a non-steroidal selective progesterone receptor modulator (SPRM) in vitro. This study investigated the molecular and physiological effects of kaempferol in the ovariectomized rat uteri.

Methods: Since genistein is a phytoestrogen that was previously demonstrated to increase uterine weight and proliferation, the ability of kaempferol to block genistein action in the uterus was investigated. Analyses of proliferation, steroid receptor expression, and induction of well-established PR-regulated targets Areg and Hand2 were completed using histological analysis and qPCR gene induction experiments. In addition, kaempferol in silico binding analysis was completed for PR. The activation of estrogen and androgen receptor signalling was determined in vitro.

Results: Molecular docking analysis confirmed that kaempferol adopts poses that are consistent with occupying the ligand-binding pocket of PRA. Kaempferol induced expression of PR regulated transcriptional targets in the ovariectomized rat uteri, including Hand2 and Areg. Consistent with progesterone-l ke activity, kaempferol attenuated genistein-induced uterine luminal epithelial proliferation without increasing uterine weight. Kaempferol signalled without down regulating PR expression in vitro and in vivo and without activating estrogen and androgen receptors.

Conclusion: Taken together, these data suggest that kaempferol is a unique natural PR modulator that activates PR signaling in vitro and in vivo without triggering PR degradation.

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