Central amygdala astrocyte plasticity underlies GABAergic dysregulation in ethanol dependence.

IF 6.2 1区 医学 Q1 PSYCHIATRY Translational Psychiatry Pub Date : 2025-04-08 DOI:10.1038/s41398-025-03337-z
Todd B Nentwig, J Daniel Obray, Anna Kruyer, Erik T Wilkes, Dylan T Vaughan, Michael D Scofield, L Judson Chandler
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Abstract

Dependence is a hallmark of alcohol use disorder characterized by excessive alcohol intake and withdrawal symptoms. The central nucleus of the amygdala (CeA) is a key brain structure underlying the synaptic and behavioral consequences of ethanol dependence. While accumulating evidence suggests that astrocytes regulate synaptic transmission and behavior, there is a limited understanding of the role astrocytes play in ethanol dependence. The present study used a combination of viral labeling, super resolution confocal microscopy, 3D image analysis, and slice electrophysiology to determine the effects of chronic intermittent ethanol (CIE) exposure on astrocyte plasticity in the CeA. During withdrawal from CIE exposure, we observed increased GABA transmission, an upregulation in astrocytic GAT3 levels, and an increased proximity of astrocyte processes near CeA synapses. Furthermore, GAT3 levels and synaptic proximity were positively associated with voluntary ethanol drinking in dependent rats. Slice electrophysiology confirmed that the upregulation in astrocytic GAT3 levels was functional, as CIE exposure unmasked a GAT3-sensitive tonic GABA current in the CeA. A causal role for astrocytic GAT3 in ethanol dependence was assessed using viral-mediated GAT3 overexpression and knockdown approaches. However, GAT3 knockdown or overexpression had no effect on somatic withdrawal symptoms, dependence-escalated ethanol intake, aversion-resistant drinking, or post-dependent ethanol drinking in male or female rats. Moreover, intra-CeA pharmacological inhibition of GAT3 did not alter dependent ethanol drinking. Together, these findings indicate that ethanol dependence induces GABAergic dysregulation and astrocyte plasticity in the CeA. However, these changes in astrocytic GAT3 do not appear to be necessary for the drinking related phenotypes associated with dependence.

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中央杏仁核星形细胞可塑性是乙醇依赖中gaba能失调的基础。
依赖是酒精使用障碍的一个标志,其特征是过量饮酒和戒断症状。杏仁核的中央核(CeA)是一个关键的脑结构基础的突触和行为后果的乙醇依赖。虽然越来越多的证据表明星形胶质细胞调节突触传递和行为,但对星形胶质细胞在乙醇依赖中所起的作用的了解有限。本研究采用病毒标记、超分辨率共聚焦显微镜、3D图像分析和切片电生理学相结合的方法来确定慢性间歇乙醇(CIE)暴露对CeA星形胶质细胞可塑性的影响。在CIE暴露退出期间,我们观察到GABA传递增加,星形细胞GAT3水平上调,星形细胞过程靠近CeA突触的距离增加。此外,GAT3水平和突触接近度与酒精依赖大鼠的自愿饮酒呈正相关。切片电生理学证实星形胶质细胞GAT3水平的上调是功能性的,因为CIE暴露在CeA中发现了GAT3敏感的强直性GABA电流。使用病毒介导的GAT3过表达和敲低方法评估星形细胞GAT3在乙醇依赖中的因果作用。然而,GAT3敲低或过表达对雄性或雌性大鼠的躯体戒断症状、依赖升级的乙醇摄入、厌恶抵抗性饮酒或依赖后乙醇饮酒没有影响。此外,cea内对GAT3的药理学抑制并未改变依赖性乙醇饮用。综上所述,这些发现表明乙醇依赖可诱导CeA中gaba能失调和星形胶质细胞可塑性。然而,星形细胞GAT3的这些变化似乎并不是与依赖相关的饮酒相关表型所必需的。
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来源期刊
CiteScore
11.50
自引率
2.90%
发文量
484
审稿时长
23 weeks
期刊介绍: Psychiatry has suffered tremendously by the limited translational pipeline. Nobel laureate Julius Axelrod''s discovery in 1961 of monoamine reuptake by pre-synaptic neurons still forms the basis of contemporary antidepressant treatment. There is a grievous gap between the explosion of knowledge in neuroscience and conceptually novel treatments for our patients. Translational Psychiatry bridges this gap by fostering and highlighting the pathway from discovery to clinical applications, healthcare and global health. We view translation broadly as the full spectrum of work that marks the pathway from discovery to global health, inclusive. The steps of translation that are within the scope of Translational Psychiatry include (i) fundamental discovery, (ii) bench to bedside, (iii) bedside to clinical applications (clinical trials), (iv) translation to policy and health care guidelines, (v) assessment of health policy and usage, and (vi) global health. All areas of medical research, including — but not restricted to — molecular biology, genetics, pharmacology, imaging and epidemiology are welcome as they contribute to enhance the field of translational psychiatry.
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