GABAergic signaling in alcohol use disorder and withdrawal: pathological involvement and therapeutic potential.

IF 3.4 3区 医学 Q2 NEUROSCIENCES Frontiers in Neural Circuits Pub Date : 2023-10-20 eCollection Date: 2023-01-01 DOI:10.3389/fncir.2023.1218737
Ravinder Naik Dharavath, Celeste Pina-Leblanc, Victor M Tang, Matthew E Sloan, Yuliya S Nikolova, Peter Pangarov, Anthony C Ruocco, Kevin Shield, Daphne Voineskos, Daniel M Blumberger, Isabelle Boileau, Nikki Bozinoff, Philip Gerretsen, Erica Vieira, Osnat C Melamed, Etienne Sibille, Lena C Quilty, Thomas D Prevot
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Abstract

Alcohol is one of the most widely used substances. Alcohol use accounts for 5.1% of the global disease burden, contributes substantially to societal and economic costs, and leads to approximately 3 million global deaths yearly. Alcohol use disorder (AUD) includes various drinking behavior patterns that lead to short-term or long-lasting effects on health. Ethanol, the main psychoactive molecule acting in alcoholic beverages, directly impacts the GABAergic system, contributing to GABAergic dysregulations that vary depending on the intensity and duration of alcohol consumption. A small number of interventions have been developed that target the GABAergic system, but there are promising future therapeutic avenues to explore. This review provides an overview of the impact of alcohol on the GABAergic system, the current interventions available for AUD that target the GABAergic system, and the novel interventions being explored that in the future could be included among first-line therapies for the treatment of AUD.

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GABA能信号在酒精使用障碍和戒断中的作用:病理学意义和治疗潜力。
酒精是使用最广泛的物质之一。酒精使用占全球疾病负担的5.1%,大大增加了社会和经济成本,每年导致全球约300万人死亡。酒精使用障碍(AUD)包括对健康产生短期或长期影响的各种饮酒行为模式。乙醇是酒精饮料中的主要精神活性分子,它直接影响GABA能系统,导致GABA能失调,这种失调因饮酒强度和持续时间而异。已经开发了少量针对GABA能系统的干预措施,但未来还有很有希望的治疗途径可供探索。这篇综述概述了酒精对GABA能系统的影响,目前针对GABA能的AUD干预措施,以及正在探索的新干预措施,这些干预措施将来可能被纳入AUD治疗的一线疗法。
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来源期刊
CiteScore
6.00
自引率
5.70%
发文量
135
审稿时长
4-8 weeks
期刊介绍: Frontiers in Neural Circuits publishes rigorously peer-reviewed research on the emergent properties of neural circuits - the elementary modules of the brain. Specialty Chief Editors Takao K. Hensch and Edward Ruthazer at Harvard University and McGill University respectively, are supported by an outstanding Editorial Board of international experts. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics and the public worldwide. Frontiers in Neural Circuits launched in 2011 with great success and remains a "central watering hole" for research in neural circuits, serving the community worldwide to share data, ideas and inspiration. Articles revealing the anatomy, physiology, development or function of any neural circuitry in any species (from sponges to humans) are welcome. Our common thread seeks the computational strategies used by different circuits to link their structure with function (perceptual, motor, or internal), the general rules by which they operate, and how their particular designs lead to the emergence of complex properties and behaviors. Submissions focused on synaptic, cellular and connectivity principles in neural microcircuits using multidisciplinary approaches, especially newer molecular, developmental and genetic tools, are encouraged. Studies with an evolutionary perspective to better understand how circuit design and capabilities evolved to produce progressively more complex properties and behaviors are especially welcome. The journal is further interested in research revealing how plasticity shapes the structural and functional architecture of neural circuits.
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