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基底神经节中的多巴胺释放。

Dopamine release in the basal ganglia.

机构信息

Department of Neurosurgery, New York University School of Medicine, 550 First Avenue, New York, NY 10016, USA.

出版信息

Neuroscience. 2011 Dec 15;198:112-37. doi: 10.1016/j.neuroscience.2011.08.066. Epub 2011 Sep 14.

Abstract

Dopamine (DA) is a key transmitter in the basal ganglia, yet DA transmission does not conform to several aspects of the classic synaptic doctrine. Axonal DA release occurs through vesicular exocytosis and is action potential- and Ca²⁺-dependent. However, in addition to axonal release, DA neurons in midbrain exhibit somatodendritic release by an incompletely understood, but apparently exocytotic, mechanism. Even in striatum, axonal release sites are controversial, with evidence for DA varicosities that lack postsynaptic specialization, and largely extrasynaptic DA receptors and transporters. Moreover, DA release is often assumed to reflect a global response to a population of activities in midbrain DA neurons, whether tonic or phasic, with precise timing and specificity of action governed by other basal ganglia circuits. This view has been reinforced by anatomical evidence showing dense axonal DA arbors throughout striatum, and a lattice network formed by DA axons and glutamatergic input from cortex and thalamus. Nonetheless, localized DA transients are seen in vivo using voltammetric methods with high spatial and temporal resolution. Mechanistic studies using similar methods in vitro have revealed local regulation of DA release by other transmitters and modulators, as well as by proteins known to be disrupted in Parkinson's disease and other movement disorders. Notably, the actions of most other striatal transmitters on DA release also do not conform to the synaptic doctrine, with the absence of direct synaptic contacts for glutamate, GABA, and acetylcholine (ACh) on striatal DA axons. Overall, the findings reviewed here indicate that DA signaling in the basal ganglia is sculpted by cooperation between the timing and pattern of DA input and those of local regulatory factors.

摘要

多巴胺(DA)是基底神经节中的关键递质,但 DA 传递不符合经典突触学说的几个方面。轴突 DA 释放通过囊泡胞吐作用发生,并且依赖动作电位和 Ca²⁺。然而,除了轴突释放之外,中脑的 DA 神经元还通过一种尚未完全了解但显然是胞吐的机制表现出体树突释放。即使在纹状体中,轴突释放位点也是有争议的,有证据表明 DA 末梢缺乏突触后特化,并且主要存在非突触 DA 受体和转运体。此外,DA 释放通常被认为反映了中脑 DA 神经元群体活动的整体反应,无论是紧张性还是阶段性,其作用的精确时间和特异性由其他基底神经节回路控制。这种观点得到了以下证据的支持:解剖学证据显示纹状体中存在密集的轴突 DA 树突,以及由 DA 轴突和来自皮质和丘脑的谷氨酸能输入形成的晶格网络。尽管如此,使用具有高时空分辨率的伏安法在体内观察到局部 DA 瞬变。使用类似方法进行的机制研究在体外揭示了其他递质和调节剂以及在帕金森病和其他运动障碍中已知被破坏的蛋白质对 DA 释放的局部调节。值得注意的是,大多数其他纹状体递质对 DA 释放的作用也不符合突触学说,谷氨酸、GABA 和乙酰胆碱(ACh)在纹状体面 DA 轴突上没有直接的突触接触。总的来说,这里综述的研究结果表明,基底神经节中的 DA 信号是由 DA 输入的时间和模式与局部调节因子的时间和模式之间的合作塑造的。

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