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Activation of TrkB with TAM-163 Results in Opposite Effects on Body Weight in Rodents and Non-Human Primates

机译:用TAM-163激活TrkB对啮齿动物和非人类灵长类动物的体重产生相反的影响

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摘要

Strong genetic data link the Tyrosine kinase receptor B (TrkB) and its major endogenous ligand brain-derived neurotrophic factor (BDNF) to the regulation of energy homeostasis, with loss-of-function mutations in either gene causing severe obesity in both mice and humans. It has previously been reported that peripheral administration of the endogenous TrkB agonist ligand neurotrophin-4 (NT-4) profoundly decreases food intake and body weight in rodents, while paradoxically increasing these same parameters in monkeys. We generated a humanized TrkB agonist antibody, TAM-163, and characterized its therapeutic potential in several models of type 2 diabetes and obesity. In vitro, TAM-163 bound to human and rodent TrkB with high affinity, activated all aspects of the TrkB signaling cascade and induced TrkB internalization and degradation in a manner similar to BDNF. In vivo, peripheral administration of TAM-163 decreased food intake and/or body weight in mice, rats, hamsters, and dogs, but increased food intake and body weight in monkeys. The magnitude of weight change was similar in rodents and non-human primates, occurred at doses where there was no appreciable penetration into deep structures of the brain, and could not be explained by differences in exposures between species. Rather, peripherally administered TAM-163 localized to areas in the hypothalamus and the brain stem located outside the blood-brain barrier in a similar manner between rodents and non-human primates, suggesting differences in neuroanatomy across species. Our data demonstrate that a TrkB agonist antibody, administered peripherally, causes species-dependent effects on body weight similar to the endogenous TrkB ligand NT-4. The possible clinical utility of TrkB agonism in treating weight regulatory disorder, such as obesity or cachexia, will require evaluation in man.
机译:强大的遗传数据将酪氨酸激酶受体B(TrkB)及其主要内源性配体脑源性神经营养因子(BDNF)与能量稳态的调节联系在一起,其中任一基因的功能丧失突变都会导致小鼠和人类严重肥胖。 。以前有报道说,内源性TrkB激动剂配体Neurotrophin-4(NT-4)的外围给药可大大减少啮齿动物的食物摄入量和体重,而自相矛盾地增加猴子的这些相同参数。我们产生了人源化的TrkB激动剂抗体TAM-163,并在2型糖尿病和肥胖症的几种模型中表征了其治疗潜力。在体外,TAM-163以高亲和力与人和啮齿类动物TrkB结合,激活TrkB信号级联反应的所有方面,并以类似于BDNF的方式诱导TrkB内在化和降解。在体内,TAM-163的外周给药减少了小鼠,大鼠,仓鼠和狗的食物摄入和/或体重,但是增加了猴子的食物摄入和体重。啮齿动物和非人类灵长类动物的体重变化幅度相似,发生在没有明显渗透到大脑深部结构的剂量下,并且不能用物种之间的暴露差异来解释。相反,以啮齿动物和非人类灵长类动物的相似方式,外周施用的TAM-163定位于下丘脑和位于血脑屏障外部的脑干区域,这表明物种间的神经解剖结构存在差异。我们的数据表明,外周给药的TrkB激动剂抗体对体重的影响取决于物种,类似于内源性TrkB配体NT-4。 TrkB激动剂在治疗体重调节性疾病(例如肥胖症或恶病质)中可能的临床应用将需要在人体中进行评估。

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