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Role of leptin in female reproduction

机译:瘦素在女性生殖中的作用

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Reproductive function is dependent on energy resources. The role of weight, body composition, fat distribution and the effect of diet have been largely investigated in experimental female animals as well as in women. Any alteration in diet and/or weight may induce abnormalities in timing of sexual maturation and fertility. However, the cellular mechanisms involved in the fine coordination of energy balance and reproduction are largely unknown. The brain and hypothalamic structures receive endocrine and/or metabolic signals providing information on the nutritional status and the degree of fat stores. Adipose tissue acts both as a store of energy and as an active endocrine organ, secreting a large number of biologically important molecules termed adipokines. Adipokines have been shown to be involved in regulation of the reproductive functions. The first adipokine described was leptin. Extensive research over the last 10 years has shown that leptin is not only an adipose tissue-derived messenger of the amount of energy stores to the brain, but also a crucial hormone/cytokine for a number of diverse physiological processes, such as inflammation, angiogenesis, hematopoiesis, immune function, and most importantly, reproduction. Leptin plays an integral role in the normal physiology of the reproductive system with complex interactions at all levels of the hypothalamic-pituitary gonadal (HPG) axis. In addition, leptin is also produced by placenta, where it plays an important autocrine function. Observational studies have demonstrated that states of leptin excess, deficiency, or resistance can be associated with abnormal reproductive function. This review focuses on the leptin action in female reproduction.
机译:生殖功能取决于能源。体重,身体组成,脂肪分布和饮食效果的作用已在实验雌性动物和雌性动物中进行了广泛研究。饮食和/或体重的任何变化都可能导致性成熟和生育时间的异常。但是,参与能量平衡和再生的精细协调的细胞机制在很大程度上是未知的。大脑和下丘脑结构接收内分泌和/或代谢信号,从而提供有关营养状况和脂肪储存程度的信息。脂肪组织既充当能量的储存者,又充当活跃的内分泌器官,分泌大量被称为脂肪因子的生物学上重要的分子。已显示脂肪因子参与生殖功能的调节。描述的第一个脂肪因子是瘦素。过去10年的大量研究表明,瘦素不仅是脂肪组织衍生的使脑能量存储量的信使,而且还是许多多种生理过程(例如炎症,血管生成)的关键激素/细胞因子。 ,造血,免疫功能,最重要的是生殖。瘦素在生殖系统的正常生理中起着不可或缺的作用,在下丘脑-垂体性腺(HPG)轴的所有水平上都有复杂的相互作用。另外,瘦素也由胎盘产生,在胎盘中它起重要的自分泌功能。观察性研究表明,瘦素过量,缺乏或抵抗的状态可能与生殖功能异常有关。这篇综述着重于瘦素在女性生殖中的作用。

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