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The human corpus luteum: life cycle and function in natural cycles.

机译:黄体:生命周期和自然周期中的功能。

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OBJECTIVE: To summarize recent advances in the understanding of the endocrine signaling pathways between the hypothalamus, pituitary, and human corpus luteum (CL); to examine the major paracrine and autocrine mechanisms and the key genes and proteins involved in CL development, function, and regression in natural cycles; to review the endocrine and molecular response of the midluteal phase CL to in vivo administration of human chorionic gonadotropin (hCG); and to describe the ultrasonographic and Doppler evaluation of the ovary and endometrium throughout the luteal phase. DESIGN: Published data in the literature, including the basic and clinical research studies of the authors. SETTING: University-affiliated hospital and research centers. PATIENT(S): None. INTERVENTION(S): None. MAIN OUTCOME MEASURE(S): Clinical and molecular analysis of human CL function. RESULT(S): The endocrine function of the subpopulations of luteal cells is critical for the maintenance of CL function, including neovacularization and steroid hormones production. We consider the key genes and proteins that favor development of luteal structure and function throughout the menstrual cycle and in our model of hCG treatment resembling early pregnancy. CONCLUSION(S): These data indicate that the functional lifespan of the CL depends on paracrine and autocrine mechanisms. Therefore, the significance of the key genes and proteins that we analyze in lutein cells during CL development, function, demise, and rescue by hCG is likely to bring new therapeutic applications for the management of fertility defects and the control of fertility.
机译:目的:总结对下丘脑,垂体和人类黄体(CL)之间内分泌信号通路的理解的最新进展;检查主要的旁分泌和自分泌机制,以及参与CL在自然周期中发育,功能和退化的关键基因和蛋白质;审查黄体中相CL对人绒毛膜促性腺激素(hCG)体内给药的内分泌和分子反应;并描述整个黄体期的卵巢和子宫内膜的超声检查和多普勒评估。设计:文献中发表的数据,包括作者的基础和临床研究。地点:大学附属医院和研究中心。患者:无。干预措施:无。主要观察指标:人CL功能的临床和分子分析。结果:黄体细胞亚群的内分泌功能对于维持CL功能至关重要,包括新血管生成和类固醇激素的产生。我们考虑了在整个月经周期中以及在类似于早期妊娠的hCG治疗模型中有利于黄体结构和功能发育的关键基因和蛋白质。结论:这些数据表明CL的功能寿命取决于旁分泌和自分泌机制。因此,我们通过hCG在CL发育,功能,死亡和拯救过程中在叶黄素细胞中分析的关键基因和蛋白质的重要​​性可能会为管理生育缺陷和控制生育带来新的治疗应用。

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