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Activation of D1R/PKA/mTOR signaling cascade in medial prefrontal cortex underlying the antidepressant effects of l-SPD

机译:D1R / PKA / mTOR信号转导在内侧前额叶皮层中的激活这是l-SPD抗抑郁作用的基础

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摘要

Major depressive disorder (MDD) is a common neuropsychiatric disorder characterized by diverse symptoms. Although several antidepressants can influence dopamine system in the medial prefrontal cortex (mPFC), but the role of D1R or D2R subtypes of dopamine receptor during anti-depression process is still vague in PFC region. To address this question, we investigate the antidepressant effect of levo-stepholidine (l-SPD), an antipsychotic medication with unique pharmacological profile of D1R agonism and D2R antagonism, and clarified its molecular mechanisms in the mPFC. Our results showed that l-SPD exerted antidepressant-like effects on the Sprague-Dawley rat CMS model of depression. Mechanism studies revealed that l-SPD worked as a specific D1R agonist, rather than D2 antagonist, to activate downstream signaling of PKA/mTOR pathway, which resulted in increasing synaptogenesis-related proteins, such as PSD 95 and synapsin I. In addition, l-SPD triggered long-term synaptic potentiation (LTP) in the mPFC, which was blocked by the inhibition of D1R, PKA, and mTOR, supporting that selective activation of D1R enhanced excitatory synaptic transduction in PFC. Our findings suggest a critical role of D1R/PKA/mTOR signaling cascade in the mPFC during the l-SPD mediated antidepressant process, which may also provide new insights into the role of mesocortical dopaminergic system in antidepressant effects.
机译:重度抑郁症(MDD)是一种常见的神经精神疾病,其症状多种多样。尽管几种抗抑郁药可以影响内侧额叶前皮质(mPFC)中的多巴胺系统,但是在PFC区域,多巴胺受体的D1R或D2R亚型在抗抑郁过程中的作用仍然模糊。为了解决这个问题,我们研究了左旋斯蒂芬定(l-SPD)的抗抑郁作用,这是一种具有D1R拮抗作用和D2R拮抗作用的独特药理作用的抗精神病药物,并阐明了其在mPFC中的分子机制。我们的结果表明,l-SPD对Sprague-Dawley大鼠抑郁症CMS模型具有抗抑郁样作用。机制研究表明,l-SPD是一种特定的D1R激动剂,而不是D2拮抗剂,可以激活PKA / mTOR途径的下游信号传导,从而导致与突触发生有关的蛋白(例如PSD 95和突触素I)增加。 -SPD触发了mPFC中的长期突触增强(LTP),这被D1R,PKA和mTOR的抑制所阻断,支持D1R的选择性激活增强了PFC中的兴奋性突触传导。我们的发现表明,在l-SPD介导的抗抑郁过程中,D1R / PKA / mTOR信号级联在mPFC中起着关键作用,这也可能为中皮层多巴胺能系统在抗抑郁作用中的作用提供新的见解。

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