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首页> 外文期刊>Molecular reproduction and development >Endometrial Breakdown With Sustained Progesterone Release Involves NF-kappa B-Mediated Functional Progesterone Withdrawal in a Mouse Implant Model
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Endometrial Breakdown With Sustained Progesterone Release Involves NF-kappa B-Mediated Functional Progesterone Withdrawal in a Mouse Implant Model

机译:子宫内膜分解与孕激素的持续释放涉及在小鼠植入模型中NF-κB介导的功能性孕酮的撤离。

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摘要

Irregular uterine bleeding is a major side effect of long-acting progestogen-only contraceptives in women, and is the primary reason women discontinue their use. In this study, a mouse model of endometrial breakdown was established using a subcutaneous progesterone implant to understand how irregular bleeding begins. Although progestogens sustained decidualization, endometrial breakdown was still observed in this model. We, therefore, hypothesized that endometrial breakdown might involve functional progesterone withdrawal. Using co-immunoprecipitation assays, we observed the constitutive activation of nuclear factor kappa-b (NF-kappa B) p65 and its interaction with the progesterone receptor (PGR); moreover, transcriptional activity of the PGR was also repressed by NF-kappa B activity in primary mouse and human decidual stromal cells that mimic progesterone maintenance. Yet the ratio of PGR-B to PGR-A was not increased in the mouse model. In vivo comparison of endometrial breakdown induced by progesterone withdrawal to that seen during sustained progesterone exposure, in the presence of NF-kappa B inhibitors, revealed that NF-k kappa B-mediated functional progesterone withdrawal is involved in endometrial breakdown in this implant model. These data prompt further studies to determine the homology of this functional progesterone withdrawal mechanism in human endometrium. (C) 2016 Wiley Periodicals, Inc.
机译:子宫不规则出血是妇女仅使用长效孕激素避孕药的主要副作用,也是妇女停止使用避孕药的主要原因。在这项研究中,使用皮下孕酮植入物建立了子宫内膜破裂的小鼠模型,以了解不规则出血是如何开始的。尽管孕激素持续蜕膜化,但在该模型中仍观察到子宫内膜破裂。因此,我们假设子宫内膜破裂可能涉及功能性黄体酮的戒断。使用免疫共沉淀试验,我们观察到了核因子κB(NF-κB)p65的组成型激活及其与孕激素受体(PGR)的相互作用。此外,在模仿孕酮维持的原代小鼠和人蜕膜基质细胞中,NF-κB活性也抑制了PGR的转录活性。然而,在小鼠模型中,PGR-B与PGR-A的比例并未增加。在存在NF-κB抑制剂的情况下,将黄体酮退缩引起的子宫内膜破裂与在持续孕激素暴露期间观察到的子宫内膜破裂进行体内比较,发现在该植入物模型中,NF-κB介导的功能性黄体酮退缩与子宫内膜破裂有关。这些数据促使人们进一步研究以确定人子宫内膜中这种功能性孕激素戒断机制的同源性。 (C)2016威利期刊公司

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