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克拉维酸通过增强囊泡转运的机制增加神经元细胞中的多巴胺释放。

Clavulanic acid increases dopamine release in neuronal cells through a mechanism involving enhanced vesicle trafficking.

机构信息

Rexahn Pharmaceuticals, Inc., Rockville, MD 20850, United States.

Department of Biochemistry and Molecular Biology, School of Medicine and Health Sciences, University of North Dakota, United States.

出版信息

Neurosci Lett. 2011 Oct 24;504(2):170-175. doi: 10.1016/j.neulet.2011.09.032. Epub 2011 Sep 21.

Abstract

Clavulanic acid is a CNS-modulating compound with exceptional blood-brain barrier permeability and safety profile. Clavulanic acid has been proposed to have anti-depressant activity and is currently entering Phase IIb clinical trials for the treatment of Major Depressive Disorder (MDD). Studies have also shown that clavulanic acid suppresses anxiety and enhances sexual functions in rodent and primate models by a mechanism involving central nervous system (CNS) modulation, although its detailed mechanism of action has yet to be elucidated. To further examine its potential as a CNS modulating agent as well as its mechanism of action, we investigated the effects of clavulanic acid in neuronal cells. Our results indicate that clavulanic acid enhances dopamine release in PC12 and SH-SY5Y cells without affecting dopamine synthesis. Furthermore, using affinity chromatography we were able to identify two proteins, Munc18-1 and Rab4 that potentially bind to clavulanic acid and play a critical role in neurosecretion and the vesicle trafficking process. Consistent with this result, an increase in the translocation of Munc18-1 and Rab4 from the cytoplasm to the plasma membrane was observed in clavulanic acid treated cells. Overall, these data suggest that clavulanic acid enhances dopamine release in a mechanism involving Munc18-1 and Rab4 modulation and warrants further investigation of its therapeutic use in CNS disorders, such as depression.

摘要

克拉维酸是一种具有中枢神经系统调节作用的化合物,具有出色的血脑屏障通透性和安全性。克拉维酸被提议具有抗抑郁活性,目前正在进行治疗重度抑郁症(MDD)的 IIb 期临床试验。研究还表明,克拉维酸通过涉及中枢神经系统(CNS)调节的机制,在啮齿动物和灵长类动物模型中抑制焦虑并增强性功能,尽管其详细的作用机制尚未阐明。为了进一步研究其作为中枢神经系统调节剂的潜力及其作用机制,我们研究了克拉维酸对神经元细胞的影响。我们的结果表明,克拉维酸增强了 PC12 和 SH-SY5Y 细胞中的多巴胺释放,而不影响多巴胺的合成。此外,使用亲和层析,我们能够鉴定出两种可能与克拉维酸结合并在神经分泌和囊泡运输过程中发挥关键作用的蛋白质,Munc18-1 和 Rab4。与该结果一致,在克拉维酸处理的细胞中观察到 Munc18-1 和 Rab4 从细胞质向质膜的易位增加。总体而言,这些数据表明克拉维酸通过调节 Munc18-1 和 Rab4 增强多巴胺释放,值得进一步研究其在 CNS 疾病(如抑郁症)中的治疗用途。

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