瘦素有助于黄体的发育。

Cell & developmental biology Pub Date : 2017-01-01 Epub Date: 2017-12-12 DOI:10.4172/2168-9296.1000190
Michelle R Garcia
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引用次数: 4

摘要

女性不孕症的机制事件已经研究了50多年,尽管取得了进展,但许多不孕症的原因仍然难以捉摸。然而,超过一半的特发性不孕症的问题已归因于有缺陷的卵巢组织负责维持一个概念,黄体(CL)。许多CL缺陷部分归因于异常血管形成(血管生成),这主要发生在黄体发育阶段。一些成熟的血管生成生长促进剂与黄体血管生成过程有关,但该过程的机制仍在研究中。最近的证据支持脂肪因子瘦素作为一个可能的成分在血管生成和发育过程中的作用。瘦素的表达存在于黄体发育和成熟阶段,并刺激CL中血管生成激素的表达。诱导的瘦素缺乏性CL有较高的异常发生率,大体形态发育不全,大直径血管和大黄体细胞数量增加。瘦素缺乏症CL的瘦素替代治疗加速了组织发育,增加了整体组织质量,并在发育的早期阶段形成了类似于成熟CL的结构。总之,证据支持瘦素参与黄体组织血管生成和发育过程的假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Leptin Contributes to the Development of the Corpus Luteum.
The mechanistic events of female infertility have been investigated for over 50 years and despite progress many causes of infertility remain elusive. However, over half of idiopathic infertility issues have been attributed to a defective ovarian tissue responsible for the maintenance of a conceptus, the corpus luteum (CL). Many CL defects are attributed, in part, to abnormal vascularization (angiogenesis), which occurs primarily during the developmental stage of the luteal lifespan. A few well-established angiogenic growth promotants have been implicated in luteal angiogenic processes but the mechanisms of the process are still under investigation. Recent evidence supports a role for the adipokine hormone leptin as a probable component in the angiogenic and developmental processes of a CL. Leptin expression is present during the developmental and maturation stages of the luteal lifespan and stimulates the expression of angiogenic hormones in the CL. Induced leptin deficient CL have a higher occurrence of abnormal, underdeveloped gross morphology and an increase in the number of large diameter vessels and large luteal cells. Leptin replacement therapy in leptin deficient CL accelerates tissue development, increasing overall tissue mass and forming a structure that resembled a mature CL during the early stages of development. Collectively, the evidence supports the supposition that leptin is involved in the angiogenic and developmental processes of luteal tissue.
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