Division of Hypothalamic Research, Department of Internal Medicine, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd, Y6-220B, Dallas, TX, 75390-9077, USA.
Cell Mol Life Sci. 2013 Mar;70(5):841-62. doi: 10.1007/s00018-012-1095-1. Epub 2012 Aug 2.
Leptin is an adipocyte-derived hormone involved in a myriad of physiological process, including the control of energy balance and several neuroendocrine axes. Leptin-deficient mice and humans are obese, diabetic, and display a series of neuroendocrine and autonomic abnormalities. These individuals are infertile due to a lack of appropriate pubertal development and inadequate synthesis and secretion of gonadotropins and gonadal steroids. Leptin receptors are expressed in many organs and tissues, including those related to the control of reproductive physiology (e.g., the hypothalamus, pituitary gland, and gonads). In the last decade, it has become clear that leptin receptors located in the brain are major players in most leptin actions, including reproduction. Moreover, the recent development of molecular techniques for brain mapping and the use of genetically modified mouse models have generated crucial new findings for understanding leptin physiology and the metabolic influences on reproductive health. In the present review, we will highlight the new advances in the field, discuss the apparent contradictions, and underline the relevance of this complex physiological system to human health. We will focus our review on the hypothalamic circuitry and potential signaling pathways relevant to leptin's effects in reproductive control, which have been identified with the use of cutting-edge technologies of molecular mapping and conditional knockouts.
瘦素是一种由脂肪细胞产生的激素,参与多种生理过程,包括能量平衡的控制和几个神经内分泌轴。瘦素缺乏的小鼠和人类肥胖、糖尿病,并表现出一系列神经内分泌和自主神经异常。这些个体由于缺乏适当的青春期发育以及促性腺激素和性腺类固醇的合成和分泌不足而不育。瘦素受体在许多器官和组织中表达,包括与生殖生理学控制有关的器官和组织(例如,下丘脑、垂体和性腺)。在过去的十年中,人们已经清楚地认识到位于大脑中的瘦素受体是大多数瘦素作用的主要参与者,包括生殖。此外,脑图谱的分子技术的最新发展和基因修饰小鼠模型的使用为理解瘦素生理学和代谢对生殖健康的影响提供了关键的新发现。在本次综述中,我们将重点介绍该领域的新进展,讨论明显的矛盾,并强调这一复杂生理系统与人类健康的相关性。我们将重点讨论与瘦素在生殖控制中的作用相关的下丘脑回路和潜在的信号通路,这些作用是使用分子图谱和条件敲除的前沿技术确定的。