神经紧张素受体 1 的偏向异构调节剂可减少啮齿动物的乙醇饮酒量和对乙醇给药的反应

Graydon B. Gereau , Diana Zhou , Kalynn Van Voorhies , Ryan E. Tyler , Jeffrey Campbell , Jackson G. Murray , Ali Alvarez-Pamir , Luke A. Wykoff , Michel A. Companion , Michael R. Jackson , Steven H. Olson , Lawrence S. Barak , Lauren M. Slosky , Ryan P. Vetreno , Joyce Besheer , Zoe A. McElligott
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引用次数: 0

摘要

酒精使用障碍(AUDs)给社会和经济造成了巨大负担,在全球范围内,酒精滥用是导致过早死亡的第七大原因[1]。尽管如此,目前在美国只有 3 种经 FDA 批准的药物可用于治疗 AUDs。神经紧张素(Nts)系统长期以来一直被认为与调节与酒精滥用相关的行为有关。最近,一种新型化合物 SBI-553 在使用精神兴奋剂的临床前模型中显示出了良好的前景,该化合物可偏向于激活 Nts 受体 1(NTSR1)的作用。在这里,我们通过评估乙醇消耗、对乙醇的行为反应、对乙醇的生理敏感性和乙醇代谢的一系列综合实验,研究这种化合物改变乙醇介导的行为的功效。此外,我们还调查了回避和认知实验中的行为,以监测 SBI-553 的潜在副作用。我们发现,SBI-553 可降低小鼠的乙醇消耗量,但不会改变回避行为或新物体识别。我们还观察到小鼠对连续注射乙醇的生理反应存在性别差异。在大鼠体内,我们发现 SBI-553 可降低对乙醇间感觉效应的敏感性(使用巴甫洛夫药物辨别任务)。我们的数据表明,以 NTSR1 信号传导为靶点可能有望减轻酒精滥用,这也是对大量文献的补充,这些文献表明 NTSR1 可能是涉及多种强化物质精神作用的共同下游靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Biased allosteric modulator of neurotensin receptor 1 reduces ethanol drinking and responses to ethanol administration in rodents
Alcohol use disorders (AUDs) impose an enormous societal and financial burden, and world-wide, alcohol misuse is the 7th leading cause of premature death [1]. Despite this, there are currently only 3 FDA approved pharmacological approaches for the treatment of AUDs in the United States. The neurotensin (Nts) system has long been implicated in modulating behaviors associated with alcohol misuse. Recently, a novel compound, SBI-553, that biases the action of Nts receptor 1 (NTSR1) activation, has shown promise in preclinical models of psychostimulant use. Here we investigate the efficacy of this compound to alter ethanol-mediated behaviors in a comprehensive battery of experiments assessing ethanol consumption, behavioral responses to ethanol, physiological sensitivity to ethanol, and ethanol metabolism. Additionally, we investigated behavior in avoidance and cognitive assays to monitor potential side effects of SBI-553. We find that SBI-553 reduces ethanol consumption in mice without altering avoidance behavior or novel object recognition. We also observe sex-dependent differences in physiological responses to sequential ethanol injections in mice. In rats, we show that SBI-553 attenuates sensitivity to the interoceptive effects of ethanol (using a Pavlovian drug discrimination task). Our data suggest that targeting NTSR1 signaling may be promising to attenuate alcohol misuse, and adds to a body of literature that suggests NTSR1 may be a common downstream target involved in the psychoactive effects of multiple reinforcing substances.
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来源期刊
Addiction neuroscience
Addiction neuroscience Neuroscience (General)
CiteScore
1.30
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