Targeting Neuroplasticity in Substance Use Disorders: Implications for Therapeutics.

IF 11.2 1区 医学 Q1 PHARMACOLOGY & PHARMACY Annual review of pharmacology and toxicology Pub Date : 2024-10-07 DOI:10.1146/annurev-pharmtox-061724-080548
Marina E Wolf
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Abstract

The last two decades have witnessed substantial advances in identifying synaptic plasticity responsible for behavioral changes in animal models of substance use disorder. We have learned the most about cocaine-induced plasticity in the nucleus accumbens and its relationship to cocaine seeking, so that is the focus in this review. Synaptic plasticity pointing to potential therapeutic targets has been identified mainly using two drug self-administration models: extinction-reinstatement and abstinence models. A relationship between cocaine seeking and potentiated AMPAR transmission in nucleus accumbens is indicated by both models. In particular, an atypical subpopulation-Ca2+-permeable or CP-AMPARs-mediates cue-induced seeking that persists even after long periods of abstinence, modeling the persistent vulnerability to relapse that represents a major challenge in treating substance use disorder. We review strategies to reverse CP-AMPAR plasticity; strategies targeting other components of excitatory synapses, including dysregulated glutamate uptake and release; and behavioral interventions that can be augmented by harnessing synaptic plasticity.

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针对药物使用障碍的神经可塑性:对治疗的影响。
过去二十年来,在确定导致药物使用障碍动物模型行为变化的突触可塑性方面取得了重大进展。我们对可卡因诱导的可塑性与可卡因寻求的关系了解最多,因此这也是本综述的重点。主要通过两种药物自我给药模型:消退-恢复模型和戒断模型,确定了指向潜在治疗靶点的突触可塑性。这两种模型都表明了可卡因寻求和强效 AMPAR 在伏隔核中的传递之间的关系。特别是,一个非典型亚群--Ca2+渗透性或CP-AMPARs--介导了线索诱导的寻求,这种寻求甚至在长期戒断后仍然存在,模拟了复吸的持续脆弱性,这是治疗药物使用障碍的一个主要挑战。我们回顾了逆转 CP-AMPAR 可塑性的策略;针对兴奋性突触其他成分(包括谷氨酸摄取和释放失调)的策略;以及可通过利用突触可塑性来加强的行为干预。
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来源期刊
CiteScore
27.80
自引率
0.00%
发文量
53
期刊介绍: Since 1961, the Annual Review of Pharmacology and Toxicology has been a comprehensive resource covering significant developments in pharmacology and toxicology. The journal encompasses various aspects, including receptors, transporters, enzymes, chemical agents, drug development science, and systems like the immune, nervous, gastrointestinal, cardiovascular, endocrine, and pulmonary systems. Special topics are also featured in this annual review.
期刊最新文献
How Biologics Have Changed the Drug Discovery Landscape. Inhibitors of Intracellular RyR2 Calcium Release Channels as Therapeutic Agents in Arrhythmogenic Heart Diseases. Targeting Neuroplasticity in Substance Use Disorders: Implications for Therapeutics. Evolving Approaches for Pharmacological Therapy of Obesity. Genetically Enriched Clinical Trials for Precision Development of Noncancer Therapeutics: A Scoping Review.
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