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TrkB激动剂可改善小鼠的肥胖及相关代谢状况。

TrkB agonists ameliorate obesity and associated metabolic conditions in mice.

作者信息

Tsao David, Thomsen Heather Koenig, Chou Joyce, Stratton Jennifer, Hagen Michael, Loo Carole, Garcia Carlos, Sloane David L, Rosenthal Arnon, Lin John C

机构信息

Rinat Laboratories, Pfizer Inc., 230 East Grand Avenue, South San Francisco, California 94080, USA.

出版信息

Endocrinology. 2008 Mar;149(3):1038-48. doi: 10.1210/en.2007-1166. Epub 2007 Dec 6.

Abstract

Mutations in the tyrosine kinase receptor trkB or in one of its natural ligands, brain-derived neurotrophic factor (BDNF), lead to severe hyperphagia and obesity in rodents and/or humans. Here, we show that peripheral administration of neurotrophin-4 (NT4), the second natural ligand for trkB, suppresses appetite and body weight in a dose-dependent manner in several murine models of obesity. NT4 treatment increased lipolysis, reduced body fat content and leptin, and elicited long-lasting amelioration of hypertriglyceridemia and hyperglycemia. After treatment termination, body weight gradually recovered to control levels in obese mice with functional leptin receptor. A single intrahypothalamic application of minute amounts of NT4 or an agonist trkB antibody also reduced food intake and body weight in mice. Taken together with the genetic evidence, our findings support the concept that trkB signaling, which originates in the hypothalamus, directly modulates appetite, metabolism, and taste preference downstream of the leptin and melanocortin 4 receptor. The trkB agonists mediate anorexic and weight-reducing effects independent of stress induction, visceral discomfort, or pain sensitization and thus emerge as a potential therapeutic for metabolic disorders.

摘要

酪氨酸激酶受体trkB或其天然配体之一脑源性神经营养因子(BDNF)发生突变,会导致啮齿动物和/或人类出现严重的食欲亢进和肥胖。在此,我们表明,trkB的第二种天然配体神经营养因子-4(NT4)经外周给药后,在多种肥胖小鼠模型中以剂量依赖的方式抑制食欲和体重。NT4治疗增加了脂肪分解,降低了体脂含量和瘦素水平,并引发了高甘油三酯血症和高血糖的长期改善。治疗终止后,具有功能性瘦素受体的肥胖小鼠体重逐渐恢复到对照水平。在下丘脑内单次微量注射NT4或trkB激动剂抗体也能降低小鼠的食物摄入量和体重。结合遗传学证据,我们的研究结果支持这样一种观点,即起源于下丘脑的trkB信号传导在瘦素和黑皮质素4受体下游直接调节食欲、代谢和味觉偏好。trkB激动剂介导的厌食和减重作用与应激诱导、内脏不适或疼痛敏化无关,因此有望成为治疗代谢紊乱的潜在药物。

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