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Surface L-type Ca2+ channel expression levels are increased in aged hippocampus.衰老海马体中表面L型钙离子通道的表达水平升高。
Aging Cell. 2014 Feb;13(1):111-20. doi: 10.1111/acel.12157. Epub 2013 Oct 1.
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Calcium entry and α-synuclein inclusions elevate dendritic mitochondrial oxidant stress in dopaminergic neurons.钙内流和α-突触核蛋白包涵体导致多巴胺能神经元树突线粒体氧化剂应激升高。
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Methamphetamine produces bidirectional, concentration-dependent effects on dopamine neuron excitability and dopamine-mediated synaptic currents.甲基苯丙胺对多巴胺能神经元兴奋性和多巴胺介导的突触电流产生双向、浓度依赖性的影响。
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The L-type channel antagonist isradipine is neuroprotective in a mouse model of Parkinson's disease.L 型钙通道拮抗剂异搏定在帕金森病小鼠模型中具有神经保护作用。
Neurobiol Dis. 2011 Aug;43(2):364-71. doi: 10.1016/j.nbd.2011.04.007. Epub 2011 Apr 16.
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Oxidant stress evoked by pacemaking in dopaminergic neurons is attenuated by DJ-1.起搏诱导的多巴胺能神经元中的氧化应激反应可被 DJ-1 减弱。
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Start/stop signals emerge in nigrostriatal circuits during sequence learning.启动/停止信号在序列学习期间出现在黑质纹状体回路中。
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In vitro identification and electrophysiological characterization of dopamine neurons in the ventral tegmental area.在腹侧被盖区中鉴定和电生理特征分析多巴胺神经元。
Neuropharmacology. 2010 Nov;59(6):431-6. doi: 10.1016/j.neuropharm.2010.06.004. Epub 2010 Jun 18.
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The acid test of fluoride: how pH modulates toxicity.氟化物的酸试验:pH 值如何调节毒性。
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9
Pacemaking in dopaminergic ventral tegmental area neurons: depolarizing drive from background and voltage-dependent sodium conductances.多巴胺能腹侧被盖区神经元的起搏:背景的去极化驱动和电压依赖性钠电导。
J Neurosci. 2010 May 26;30(21):7401-13. doi: 10.1523/JNEUROSCI.0143-10.2010.
10
IP3 receptor sensitization during in vivo amphetamine experience enhances NMDA receptor plasticity in dopamine neurons of the ventral tegmental area.在体内安非他命体验期间,IP3 受体敏化增强了腹侧被盖区多巴胺神经元中 NMDA 受体的可塑性。
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衰老降低黑质多巴胺神经元中的 L 型钙通道电流和起搏发放保真度。

Aging decreases L-type calcium channel currents and pacemaker firing fidelity in substantia nigra dopamine neurons.

机构信息

Department of Physiology.

Department of Cellular and Structural Biology, and.

出版信息

J Neurosci. 2014 Jul 9;34(28):9310-8. doi: 10.1523/JNEUROSCI.4228-13.2014.

DOI:10.1523/JNEUROSCI.4228-13.2014
PMID:25009264
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4087208/
Abstract

Substantia nigra dopamine neurons are involved in behavioral processes that include cognition, reward learning, and voluntary movement. Selective deterioration of these neurons is responsible for the motor deficits associated with Parkinson's disease (PD). Aging is the leading risk factor for PD, suggesting that adaptations occurring in dopamine neurons during normal aging may predispose individuals to the development of PD. Previous studies suggest that the unique set of ion conductances that drive spontaneous, rhythmic firing of action potentials could predispose substantia nigra dopamine neurons to selective neurodegeneration. Here we show, using patch-clamp electrophysiological recordings in brain slices, that substantia nigra dopamine neurons from mice 25-30 months of age (old) have comparable membrane capacitance and input resistance to neurons from mice 2-7 months of age (young). However, neurons from old mice exhibit slower firing rates, narrower spike widths, and more variable interspike intervals compared with neurons from young mice. Dopamine neurons from old mice also exhibit smaller L-type calcium channel currents, providing a plausible mechanism that likely contributes to the changes in impulse activity. Age-related decrements in the physiological function of dopamine neurons could contribute to the decrease in voluntary movement and other dopamine-mediated behaviors observed in aging populations. Furthermore, as pharmacological antagonism of L-type calcium channels has been proposed as a potential treatment for the early stages of PD, our results could point to a limited temporal window of opportunity for this therapeutic intervention.

摘要

黑质多巴胺神经元参与多种行为过程,包括认知、奖励学习和自主运动。这些神经元的选择性退化是导致帕金森病(PD)运动功能障碍的原因。衰老时 PD 的主要危险因素,这表明在正常衰老过程中多巴胺神经元发生的适应性变化可能使个体易患 PD。先前的研究表明,驱动自发性、有节奏的动作电位放电的独特离子电导可能使黑质多巴胺神经元容易发生选择性神经退行性变。在这里,我们通过脑切片的膜片钳电生理记录显示,25-30 月龄(老年)的小鼠黑质多巴胺神经元的膜电容和输入电阻与 2-7 月龄(年轻)的神经元相当。然而,与年轻小鼠的神经元相比,老年小鼠的神经元表现出较慢的放电率、较窄的峰宽和更可变的峰间间隔。老年小鼠的多巴胺神经元还表现出较小的 L 型钙通道电流,这提供了一种合理的机制,可能导致冲动活动的变化。多巴胺神经元的生理功能随年龄的增长而下降,可能导致衰老人群中自主运动和其他多巴胺介导行为的减少。此外,由于 L 型钙通道的药理学拮抗作用已被提议作为 PD 早期阶段的潜在治疗方法,我们的结果可能表明这种治疗干预的时间窗口有限。