Human leptin: an adipocyte hormone with weight-regulatory and endocrine functions.

Robert V Considine
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引用次数: 1

Abstract

Leptin is synthesized and secreted primarily by adipocytes, and is present in serum in direct proportion to the amount of adipose tissue. The primary role of leptin is to provide to the central nervous system a signal of energy intake and energy stores in the body so that the hypothalamus can efficiently maintain a stable body weight. The receptor for leptin in the hypothalamus signals by activation of an associated janus kinase which phosphorylates signal transducer and activator of transcription (STAT) proteins that regulate neuronal gene expression. Genetic mutations in leptin and its receptor can result in obesity in both rodents and humans, supporting a central role for leptin in the regulation of body weight. Leptin has also been implicated in a variety of physiological processes other than body weight homeostasis. Many of these functions are mediated through the central nervous system; however, the presence of leptin receptors in tissues throughout the body suggests that leptin can also have direct effects on cells and tissues. Serum leptin levels have been associated with cardiovascular risk factors after correction for adiposity. Leptin can promote platelet aggregation, which requires expression of functional leptin receptors on the platelet. Leptin-induced increases in sympathetic nerve activity have been suggested to contribute to hypertension, and leptin has been observed to increase oxidative stress in cultured endothelial cells. Many of these pathophysiologic effects of leptin on the vasculature are most likely of importance when leptin levels are elevated in obese subjects due to resistance to the weight-reducing effects of the hormone. An improved understanding of the effects of leptin on the vasculature will provide valuable insight into the relationship between obesity and cardiovascular disease.

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人瘦素:一种具有体重调节和内分泌功能的脂肪细胞激素。
瘦素主要由脂肪细胞合成和分泌,在血清中与脂肪组织的数量成正比。瘦素的主要作用是向中枢神经系统提供体内能量摄入和能量储存的信号,使下丘脑能够有效地维持稳定的体重。下丘脑中的瘦素受体通过激活相关的janus激酶来发出信号,该激酶磷酸化调节神经元基因表达的信号换能器和转录激活因子(STAT)蛋白。瘦素及其受体的基因突变可导致啮齿动物和人类肥胖,这支持了瘦素在调节体重方面的核心作用。瘦素还与体重平衡以外的多种生理过程有关。许多这些功能是通过中枢神经系统调节的;然而,瘦素受体在全身组织中的存在表明,瘦素也可以对细胞和组织产生直接影响。肥胖矫正后血清瘦素水平与心血管危险因素相关。瘦素可以促进血小板聚集,这需要在血小板上表达功能性瘦素受体。瘦素诱导的交感神经活动增加已被认为是高血压的原因之一,并且瘦素已被观察到可增加培养内皮细胞的氧化应激。当肥胖患者对瘦素的减肥作用产生抵抗,导致瘦素水平升高时,瘦素对脉管系统的许多病理生理作用就显得尤为重要。对瘦素对脉管系统影响的进一步了解将为肥胖和心血管疾病之间的关系提供有价值的见解。
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