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使用胆碱敏感微电极在体内测量皮质胆碱转运体功能:内源性和外源性胆碱的清除以及胆碱能终末去除的影响。

Cortical choline transporter function measured in vivo using choline-sensitive microelectrodes: clearance of endogenous and exogenous choline and effects of removal of cholinergic terminals.

作者信息

Parikh V, Sarter M

机构信息

Department of Psychology, University of Michigan, Ann Arbor, 48109, USA.

出版信息

J Neurochem. 2006 Apr;97(2):488-503. doi: 10.1111/j.1471-4159.2006.03766.x. Epub 2006 Mar 15.

DOI:10.1111/j.1471-4159.2006.03766.x
PMID:16539662
Abstract

The capacity of the high-affinity choline transporter (CHT) to import choline into presynaptic terminals is essential for acetylcholine synthesis. Ceramic-based microelectrodes, coated at recording sites with choline oxidase to detect extracellular choline concentration changes, were attached to multibarrel glass micropipettes and implanted into the rat frontoparietal cortex. Pressure ejections of hemicholinium-3 (HC-3), a selective CHT blocker, dose-dependently reduced the uptake rate of exogenous choline as well as that of choline generated in response to terminal depolarization. Following the removal of CHTs, choline signal recordings confirmed that the demonstration of potassium-induced choline signals and HC-3-induced decreases in choline clearance require the presence of cholinergic terminals. The results obtained from lesioned animals also confirmed the selectivity of the effects of HC-3 on choline clearance in intact animals. Residual cortical choline clearance correlated significantly with CHT-immunoreactivity in lesioned and intact animals. Finally, synaptosomal choline uptake assays were conducted under conditions reflecting in vivo basal extracellular choline concentrations. Results from these assays confirmed the capacity of CHTs measured in vivo and indicated that diffusion of substrate away from the electrode did not confound the in vivo findings. Collectively, these results indicate that increases in extracellular choline concentrations, irrespective of source, are rapidly cleared by CHTs.

摘要

高亲和力胆碱转运体(CHT)将胆碱导入突触前终末的能力对于乙酰胆碱的合成至关重要。将基于陶瓷的微电极连接到多管玻璃微吸管上,并植入大鼠额顶叶皮层,该微电极在记录部位涂有胆碱氧化酶以检测细胞外胆碱浓度变化。选择性CHT阻断剂半胱氨酸-3(HC-3)的压力喷射剂量依赖性地降低了外源性胆碱的摄取率以及终末去极化后产生的胆碱的摄取率。去除CHT后,胆碱信号记录证实,钾诱导的胆碱信号的显示以及HC-3诱导的胆碱清除率降低需要胆碱能终末的存在。从损伤动物获得的结果也证实了HC-3对完整动物胆碱清除作用的选择性。损伤和完整动物的残余皮质胆碱清除率与CHT免疫反应性显著相关。最后,在反映体内基础细胞外胆碱浓度的条件下进行突触体胆碱摄取试验。这些试验的结果证实了体内测量的CHT的能力,并表明底物从电极扩散不会混淆体内研究结果。总的来说,这些结果表明,细胞外胆碱浓度的增加,无论来源如何,都会被CHT迅速清除。

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