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Efflux of dopamine from the synaptic cleft in the nucleus accumbens of the rat brain

机译:多巴胺从大鼠大脑伏隔核突触间隙流出

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摘要

Synaptic release of dopamine in the nucleus accumbens of the intact rat brain elicited by a single electrical impulse applied to ascending dopaminergic fibers results in extracellular concentrations sufficient to bind the known dopamine receptors. The dopamine concentration observed after four rapid, sequential pulses is exactly four times greater and is unaffected by pharmacological antagonism of dopamine uptake and receptor sites at supramaximal concentrations. Thus, dopamine efflux from the synaptic cleft is not restricted by binding to intrasynaptic proteins on the time scale of the measurements (50–100 msec). The extracellular concentration, as a result of a single stimulus pulse, is 0.25 microM and is rapidly removed by extrasynaptic uptake. This maximal, transient concentration of dopamine is 60 times higher than steady-state concentrations reported previously using dialysis techniques, illustrating that dopamine extracellular concentrations are spatially and temporally heterogenous. In contrast to ACh transmission at the neuromuscular junction, the dopamine synapse in the telencephalon is designed for the effective efflux of dopamine from the synaptic cleft to the extrasynaptic compartment during neurotransmission.
机译:多巴胺突触释放在完整的大鼠大脑伏隔核中,是由施加在上升的多巴胺能纤维上的单个电脉冲引起的,导致细胞外浓度足以结合已知的多巴胺受体。在连续四个快速脉冲后观察到的多巴胺浓度正好是原来的四倍,并且不受最高浓度的多巴胺摄取和受体部位的药理拮抗作用的影响。因此,在测量的时间范围内(50-100毫秒),从突触间隙产生的多巴胺流出不受结合到突触内蛋白的限制。由于单个刺激脉冲,细胞外浓度为0.25 microM,并通过突触外摄取迅速去除。多巴胺的最大瞬时浓度比以前使用透析技术报道的稳态浓度高60倍,这说明多巴胺的细胞外浓度在空间和时间上都是异质的。与神经肌肉接头处的ACh传递相反,端脑中的多巴胺突触被设计用于神经传递过程中多巴胺从突触裂隙到突触外隔室的有效流出。

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