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超极化激活电流决定黑质多巴胺能神经元的突触兴奋性、钙活性和特定活力。

The Hyperpolarization-Activated Current Determines Synaptic Excitability, Calcium Activity and Specific Viability of Substantia Nigra Dopaminergic Neurons.

作者信息

Carbone Carmen, Costa Alessia, Provensi Gustavo, Mannaioni Guido, Masi Alessio

机构信息

Department of Neuroscience, Psychology, Drug Research and Child Health (NEUROFARBA), Section of Pharmacology and Toxicology, University of FlorenceFlorence, Italy.

Toxicology Unit, Azienda Ospedaliero-Universitaria CareggiFlorence, Italy.

出版信息

Front Cell Neurosci. 2017 Jun 28;11:187. doi: 10.3389/fncel.2017.00187. eCollection 2017.

Abstract

Differential vulnerability between Substantia Nigra pars compacta (SNpc) and Ventral Tegmental Area (VTA) dopaminergic (DAergic) neurons is a hallmark of Parkinson's disease (PD). Understanding the molecular bases of this key histopathological aspect would foster the development of much-needed disease-modifying therapies. Non-heterogeneous DAergic degeneration is present in both toxin-based and genetic animal models, suggesting that cellular specificity, rather than causing factors, constitutes the background for differential vulnerability. In this regard, we previously demonstrated that MPP+, a neurotoxin able to cause selective nigrostriatal degeneration in animal rodents and primates, inhibits the Hyperpolarization-activated current (Ih) in SNpc DAergic neurons and that pharmacological Ih antagonism causes potentiation of evoked Excitatory post-synaptic potentials (EPSPs). Of note, the magnitude of such potentiation is greater in the SNpc subfield, consistent with higher Ih density. In the present work, we show that Ih block-induced synaptic potentiation leads to the amplification of somatic calcium responses (SCRs) . This effect is specific for the SNpc subfield and largely mediated by L-Type calcium channels, as indicated by sensitivity to the CaV 1 blocker isradipine. Furthermore, Ih is downregulated by low intracellular ATP and determines the efficacy of GABAergic inhibition in SNpc DAergic neurons. Finally, we show that stereotaxic administration of Ih blockers causes SNpc-specific neurodegeneration and hemiparkinsonian motor phenotype in rats. During PD progression, Ih downregulation may result from mitochondrial dysfunction and, in concert with PD-related disinhibition of excitatory inputs, determine a SNpc-specific disease pathway.

摘要

黑质致密部(SNpc)和腹侧被盖区(VTA)多巴胺能(DAergic)神经元之间的差异易损性是帕金森病(PD)的一个标志。了解这一关键组织病理学方面的分子基础将促进急需的疾病修饰疗法的发展。基于毒素和基因的动物模型中均存在非异质性多巴胺能变性,这表明细胞特异性而非致病因素构成了差异易损性的背景。在这方面,我们之前证明,MPP + 这种能够在动物啮齿动物和灵长类动物中引起选择性黑质纹状体变性的神经毒素,可抑制SNpc多巴胺能神经元中的超极化激活电流(Ih),并且药理学上的Ih拮抗作用会导致诱发的兴奋性突触后电位(EPSP)增强。值得注意的是,这种增强的幅度在SNpc亚区更大,这与更高的Ih密度一致。在本研究中,我们表明Ih阻断诱导的突触增强导致体细胞钙反应(SCR)放大。这种效应在SNpc亚区具有特异性,并且很大程度上由L型钙通道介导,对CaV 1阻滞剂伊拉地平的敏感性表明了这一点。此外,Ih在细胞内ATP水平较低时被下调,并决定了SNpc多巴胺能神经元中GABA能抑制的功效。最后,我们表明立体定向给予Ih阻滞剂会导致大鼠SNpc特异性神经变性和偏侧帕金森运动表型。在PD进展过程中,Ih下调可能是由线粒体功能障碍导致的,并且与PD相关的兴奋性输入去抑制共同作用,决定了一条SNpc特异性的疾病途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/186c/5487410/c03f191a798f/fncel-11-00187-g0001.jpg

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