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Restructuring of basal ganglia circuitry and associated behaviors triggered by low striatal D2 receptor expression: implications for substance use disorders

机译:低纹状体D2受体表达触发的基底节神经节回路的重组和相关行为:对物质使用障碍的影响

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摘要

Dopamine D2 receptors (D2Rs) consistently emerge as a critical substrate for the etiology of some major psychiatric disorders. Indeed, a central theory of substance use disorders (SUDs) postulates that a reduction in D2R levels in the striatum is a determining factor that confers vulnerability to abuse substances. A large number of clinical and preclinical studies strongly support this link between SUDs and D2Rs; however, identifying the mechanism by which low D2Rs facilitate SUDs has been hindered by the complexity of circuit connectivity, the heterogeneity of D2R expression and the multifaceted constellation of phenotypes observed in SUD patient. Animal models are well‐suited for understanding the mechanisms because they allow access to the circuitry and the genetic tools that enable a dissection of the D2R heterogeneity. This review discusses recent findings on the functional role of D2Rs and highlights the distinctive contributions of D2Rs expressed on specific neuronal subpopulations to the behavioral responses to stimulant drugs. A circuit‐wide restructuring of local and long‐range inhibitory connectivity within the basal ganglia is observed in response to manipulation of striatal D2R levels and is accompanied by multiple alterations in dopamine‐dependent behaviors. Collectively, these new findings provide compelling evidence for a critical role of striatal D2Rs in shaping basal ganglia connectivity; even among neurons that do not express D2Rs. These findings from animal models have deep clinical implications for style="fixed-case">SUD patients with low levels style="fixed-case">D2R availability where a similar restructuring of basal ganglia circuitry is expected to take place.
机译:多巴胺D2受体(D2Rs)始终作为某些主要精神疾病的病因的重要底物出现。的确,物质滥用障碍(SUDs)的中心理论假设纹状体中D2R水平的降低是赋予滥用药物脆弱性的决定性因素。大量的临床和临床前研究强烈支持SUD和D2R之间的这种联系。但是,由于电路连接的复杂性,D2R表达的异质性和在SUD患者中观察到的表型的多面性,阻碍了确定低D2R促进SUD的机制。动物模型非常适合理解机理,因为它们允许访问电路和遗传工具,从而能够剖析D2R异质性。这篇综述讨论了有关D2Rs功能作用的最新发现,并强调了在特定神经元亚群上表达的D2Rs对刺激药物行为反应的独特贡献。响应纹状体D2R水平的操纵,观察到了基底节内局部和远距离抑制性连接的全回路重组,并伴有多巴胺依赖性行为的多种改变。总的来说,这些新发现为纹状体D2R在塑造基底神经节连通性中的关键作用提供了令人信服的证据。即使在不表达D2R的神经元中也是如此。来自动物模型的这些发现对 style =“ fixed-case”> SUD 患者的 style =“ fixed-case”> D2R 水平低的患者具有深远的临床意义,其中基底神经节电路有望发生。

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