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首页> 外文期刊>Psychopharmacology >Opiate dependence induces cell type-specific plasticity of intrinsic membrane properties in the rat juxtacapsular bed nucleus of stria terminalis (jcBNST)
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Opiate dependence induces cell type-specific plasticity of intrinsic membrane properties in the rat juxtacapsular bed nucleus of stria terminalis (jcBNST)

机译:屈曲依赖性诱导特异性膜特异性特异性膜特异性在斯特拉毒率(JCBNST)的大鼠血管瘫痪床中的内在膜特性

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Abstract Rationale Drugs of abuse can alter circuit dynamics by modifying synaptic efficacy and/or the intrinsic membrane properties of neurons. The juxtacapsular subdivision of the bed nucleus of stria terminalis (jcBNST) has unique connectivity that positions it to integrate cortical and amygdala inputs and provide feed-forward inhibition to the central nucleus of the amygdala (CeA), among other regions. In this study, we investigated changes in the synaptic and intrinsic properties of neurons in the rat jcBNST during protracted withdrawal from morphine dependence using a combination of conventional electrophysiological methods and the dynamic clamp technique. Results A history of opiate dependence induced a form of cell type-specific plasticity characterized by reduced inward rectification associated with more depolarized resting membrane potentials and increased membrane resistance. This cell type also showed a lower rheobase when stimulated with direct current (DC) pulses as well as a decreased firing threshold under simulated synaptic bombardment with the dynamic clamp. Morphine dependence also decreased excitatory postsynaptic potential amplification, suggesting the downregulation of the persistent Na + current ( I NaP ). Conclusion These findings show that a history of morphine dependence leads to persistent cell type-specific plasticity of the passive membrane properties of a jcBNST neuronal population, leading to an overall increased excitability of such neurons. By altering the activity of extended amygdala circuits where they are embedded, changes in the integration properties of jcBNST neurons may contribute to emotional dysregulation associated with drug dependence and withdrawal.
机译:摘要通过修改突触效能和/或神经元的内在膜特性,可以改变电路动力学的理由药物。 Stria Termateis(JCBNST)的床核的juxtapapsulary细胞具有独特的连通性,该连接性地将其整合到皮质和杏仁醛输入,并为其他地区提供给Amygdala(CEA)的中央核提供前馈抑制。在这项研究中,我们使用常规电生理方法和动态钳位技术的组合来研究延伸的依赖于吗啡依赖期间大鼠JCBNST中神经元突触和内在性质的变化。结果表明,一种细胞型特异性可塑性的历史,其特征在于与更差极化的静止膜电位和增加的膜抗性相关的向内整流减少。当用直流(DC)脉冲刺激时,这种细胞类型也显示出低流碱基,以及用动态夹具的模拟突触轰击下的烧制阈值下降。吗啡依赖性也降低了兴奋性突触潜力扩增,表明持久性Na +电流的下调(我睡觉)。结论这些发现表明,吗啡依赖的历史导致JCBNST神经元群的被动膜特性的持续细胞型特异性,导致这种神经元的总体兴奋性增加。通过改变嵌入它们的扩展杏仁液电路的活动,JCBNST神经元的整合性质的变化可能有助于与药物依赖和戒断相关的情绪困难。

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