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首页> 外文期刊>Brain research >Age-related impairment of coupling mechanism between neuronal activation and functional cerebral blood flow response was restored by cholinesterase inhibition: PET study with microdialysis in the awake monkey brain.
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Age-related impairment of coupling mechanism between neuronal activation and functional cerebral blood flow response was restored by cholinesterase inhibition: PET study with microdialysis in the awake monkey brain.

机译:胆碱酯酶抑制可恢复与年龄相关的神经元激活与功能性脑血流反应之间耦合机制的损伤:在清醒的猴脑中进行微透析的PET研究。

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摘要

The effects of three cholinesterase inhibitors (physostigmine, E2020, and Tacrine), all of which are to be cognitive enhancers, on the functional regional cerebral blood flow (rCBF) response were studied in young (5.9+/-1.8 years old) and aged (18.0+/-3.3 years old) monkeys under awake conditions using high-resolution positron emission tomography (PET). Under control condition, vibrotactile stimulation elicited increases in the rCBF response in the contralateral somatosensory cortices of both young and aged monkeys, but the degree of increase in rCBF response was significantly lower in aged (115.8%) than that in young monkeys (139.9%). Regional cerebral metabolic rate of glucose (rCMRglc) response to the stimulation, measured using [18F]-2-fluoro-2-deoxy-Dphysostigmine) were consistent with the data obtained by microdialysis. In contrast, the cognitive enhancers did not alter rCBF response to stimulation in young monkeys. The present results demonstrated that the functional change in rCBF response to the stimulation was induced during the aging process by impairment of the coupling mechanism between the neuronal activation and rCBF response. Furthermore, the observation that cognitive enhancers partly restored the functional rCBF response suggested that the coupling mechanism might be regulated via cholinergic neuronal transmission.
机译:在年轻人(5.9 +/- 1.8岁)和年龄较大的人群中研究了三种胆碱酯酶抑制剂(毒扁豆碱,E2020和他克林)均是认知增强剂,它们对功能性区域脑血流(rCBF)反应的影响(18.0 +/- 3.3岁)的猴子在清醒条件下使用高分辨率正电子发射断层扫描(PET)。在控制条件下,动触觉刺激引起幼年和成年猴子对侧体感皮层的rCBF响应增加,但成年(115.8%)的rCBF响应的增加程度明显低于幼猴(139.9%) 。使用[18F] -2-氟-2-脱氧-Dphysostigmine测量的对刺激的局部葡萄糖脑代谢率(rCMRglc)与通过微透析获得的数据一致。相反,认知增强剂并未改变rCBF对小猴子刺激的反应。目前的结果表明,在衰老过程中,神经元激活与rCBF反应之间的耦合机制受到损害,从而导致rCBF对刺激的功能改变。此外,认知增强剂部分恢复了功能性rCBF反应的观察表明,偶联机制可能通过胆碱能神经元传递来调节。

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