Role of endothelial cells in the steroidogenic activity of the bovine corpus luteum.

R Meidan, E Girsh
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引用次数: 12

Abstract

The LH surge triggers the ovulation of the preovulatory follicle and subsequent formation of a corpus luteum. After ovulation, microvessels from the thecal layer grow into the granulosa cell layer and a rapid process of neovascularization takes place, by midcycle endothelial cells constitute more than 50% of total corpus luteum (CL) cells. Concomitantly with the angiogenic process, luteal steroidogenic cells differentiate as they are surrounded by the growing capillary network. Luteal regression, on the other hand, is accompanied by changes in blood flow and vasculature. Thus, changes in the endothelial cell population within the CL closely consort with the functional changes occurring during various stages of the CL life span. This article summarizes data demonstrating that endothelial cells play an essential role in luteal steroidogenic activity by being involved in both luteotrophic and luteolytic processes.

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内皮细胞在牛黄体类固醇生成活性中的作用。
黄体生成素激增触发排卵前卵泡的排卵和随后黄体的形成。排卵后,来自鞘层的微血管生长到颗粒细胞层,并发生快速的新生血管形成过程,到中期内皮细胞占黄体细胞总数的50%以上。伴随着血管生成过程,黄体甾体生成细胞被生长的毛细血管网络包围而分化。另一方面,黄体退化伴随着血流和脉管系统的变化。因此,血管内皮细胞群的变化与血管内皮细胞在不同生命阶段的功能变化密切相关。本文总结了证明内皮细胞通过参与黄体营养和黄体溶解过程在黄体类固醇生成活性中起重要作用的数据。
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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Publisher's Note: In Gratitude Farewell - and Thanks Prolactin and its receptor in human endometrium. Paracrinology of endometrial neuropeptides: corticotropin-releasing hormone and opioids. The role of placental Fas ligand in maintaining immune privilege at maternal-fetal interfaces.
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