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外侧下丘脑的失活通过调节 Kcnq3 表达来减弱甲基苯丙胺诱导的条件性位置偏爱。

Inactivation of the Lateral Hypothalamus Attenuates Methamphetamine-Induced Conditioned Place Preference through Regulation of Kcnq3 Expression.

机构信息

Department of Anatomy, School of Basic Medical Sciences, Shandong University, Jinan 250012, China.

出版信息

Int J Mol Sci. 2022 Jun 30;23(13):7305. doi: 10.3390/ijms23137305.

Abstract

Repeated administration of methylamphetamine (MA) induces MA addiction, which is featured by awfully unpleasant physical and emotional experiences after drug use is terminated. Neurophysiological studies show that the lateral hypothalamus (LH) is involved in reward development and addictive behaviors. Here, we show that repeated administration of MA activates the expression of c-Fos in LH neurons responding to conditioned place preference (CPP). Chemogenetic inhibition of the LH can disrupt the addiction behavior, demonstrating that the LH plays an important role in MA-induced reward processing. Critically, MA remodels the neurons of LH synaptic plasticity, increases intracellular calcium level, and enhances spontaneous current and evoked potentials of neurons compared to the saline group. Furthermore, overexpression of the potassium voltage-gated channel subfamily Q member 3 (Kcnq3) expression can reverse the CPP score and alleviate the occurrence of addictive behaviors. Together, these results unravel a new neurobiological mechanism underlying the MA-induced addiction in the lateral hypothalamus, which could pave the way toward new and effective interventions for this addiction disease.

摘要

反复给予甲基苯丙胺(MA)会导致 MA 成瘾,其特征是在药物使用停止后会产生极其不愉快的身体和情绪体验。神经生理学研究表明,外侧下丘脑(LH)参与了奖励的发展和成瘾行为。在这里,我们发现反复给予 MA 会激活 LH 神经元中对条件性位置偏好(CPP)反应的 c-Fos 的表达。LH 的化学遗传抑制可以破坏成瘾行为,表明 LH 在 MA 诱导的奖励处理中起着重要作用。至关重要的是,与盐水组相比,MA 重塑了 LH 突触可塑性的神经元,增加了细胞内钙水平,并增强了神经元的自发电流和诱发电位。此外,钾电压门控通道亚家族 Q 成员 3(Kcnq3)表达的过表达可以逆转 CPP 评分并减轻成瘾行为的发生。总之,这些结果揭示了外侧下丘脑 MA 诱导成瘾的新神经生物学机制,为这种成瘾疾病的新的有效干预措施铺平了道路。

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