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芬氟拉明对中枢黑皮质素通路的激活作用。

Activation of central melanocortin pathways by fenfluramine.

作者信息

Heisler Lora K, Cowley Michael A, Tecott Laurence H, Fan Wei, Low Malcolm J, Smart James L, Rubinstein Marcelo, Tatro Jeffrey B, Marcus Jacob N, Holstege Henne, Lee Charlotte E, Cone Roger D, Elmquist Joel K

机构信息

Division of Endocrinology, Diabetes and Metabolism, Department of Medicine, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02215, USA.

出版信息

Science. 2002 Jul 26;297(5581):609-11. doi: 10.1126/science.1072327.

Abstract

D-fenfluramine (d-FEN) was once widely prescribed and was among the most effective weight loss drugs, but was withdrawn from clinical use because of reports of cardiac complications in a subset of patients. Discerning the neurobiology underlying the anorexic action of d-FEN may facilitate the development of new drugs to prevent and treat obesity. Through a combination of functional neuroanatomy, feeding, and electrophysiology studies in rodents, we show that d-FEN-induced anorexia requires activation of central nervous system melanocortin pathways. These results provide a mechanistic explanation of d-FEN's anorexic actions and indicate that drugs targeting these downstream melanocortin pathways may prove to be effective and more selective anti-obesity treatments.

摘要

右旋芬氟拉明(d-FEN)曾被广泛处方,是最有效的减肥药物之一,但由于部分患者出现心脏并发症的报告而退出临床使用。了解d-FEN厌食作用背后的神经生物学机制可能有助于开发预防和治疗肥胖症的新药。通过对啮齿动物进行功能神经解剖学、进食和电生理学研究相结合的方法,我们发现d-FEN诱导的厌食需要激活中枢神经系统黑皮质素通路。这些结果为d-FEN的厌食作用提供了一种机制解释,并表明针对这些下游黑皮质素通路的药物可能被证明是有效且更具选择性的抗肥胖治疗方法。

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