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脂肪组织对生长激素分泌细胞功能的调节。

Regulation of somatotroph cell function by the adipose tissue.

作者信息

Dieguez C, Carro E, Seoane L M, Garcia M, Camina J P, Senaris R, Popovic V, Casanueva F F

机构信息

Department of Physiology, Faculty of Medicine, University of Santiago, Santiago de Compostela, Spain.

出版信息

Int J Obes Relat Metab Disord. 2000 Jun;24 Suppl 2:S100-3. doi: 10.1038/sj.ijo.0801290.

Abstract

Obese subjects exhibit a marked decrease in plasma growth hormone (GH) levels. However, the mechanisms by which increased adiposity leads to an impairment of GH secretion are poorly understood. Recent evidence suggests that the adipose tissue can markedly influence GH secretion via two different signals, namely free fatty acids (FFA) and leptin. FFA appear to inhibit GH secretion mainly by acting directly at pituitary level. Interestingly, reduction in circulating FFA levels in obese subjects led to a marked increase in GH responses to different GH secretagogues. This indicates that FFA exert a tonic inhibitory effect that contributes to blunted GH secretion in obese subjects. Recent data have shown that leptin is a metabolic signal that regulates GH secretion, since the administration of leptin antiserum to adult rats led to a marked decrease in spontaneous GH secretion. However, leptin prevents,the inhibitory effect exerted by fasting on plasma GH levels. The effect of leptin in adult rats appears to be exerted at hypothalamic level by regulating growth hormone releasing hormone (GHRH), somatostatin and neuropeptide Y (NPY)-producing neurones. In addition, during fetal life or following the development of pituitary tumors, leptin can also act directly at the anterior pituitary.

摘要

肥胖受试者的血浆生长激素(GH)水平显著降低。然而,肥胖导致GH分泌受损的机制尚不清楚。最近的证据表明,脂肪组织可通过两种不同信号,即游离脂肪酸(FFA)和瘦素,显著影响GH分泌。FFA似乎主要通过直接作用于垂体水平来抑制GH分泌。有趣的是,肥胖受试者循环FFA水平降低导致对不同GH促分泌素的GH反应显著增加。这表明FFA发挥了一种持续性抑制作用,导致肥胖受试者GH分泌减弱。最近的数据表明,瘦素是一种调节GH分泌的代谢信号,因为给成年大鼠注射瘦素抗血清会导致自发性GH分泌显著减少。然而,瘦素可防止禁食对血浆GH水平的抑制作用。瘦素对成年大鼠的作用似乎是通过调节生长激素释放激素(GHRH)、生长抑素和产生神经肽Y(NPY)的神经元,在下丘脑水平发挥的。此外,在胎儿期或垂体肿瘤发生后,瘦素也可直接作用于垂体前叶。

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