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前扣带回皮质中的胆碱能神经传递与健康老年人的认知表现相关:基于神经可塑性的计算机化运动改善衰老神经健康(INHANCE)试验的基线特征

Cholinergic neurotransmission in the anterior cingulate cortex is associated with cognitive performance in healthy older adults: Baseline characteristics of the Improving Neurological Health in Aging via Neuroplasticity-based Computerized Exercise (INHANCE) trial.

作者信息

de Figueiredo Pelegrino Ana, Attarha Mouna, Toussaint Paule-Joanne, Ouellet Lydia, Grant Sarah-Jane, Van Vleet Thomas, de Villers-Sidani Etienne

出版信息

medRxiv. 2024 Nov 1:2024.10.30.24316439. doi: 10.1101/2024.10.30.24316439.

Abstract

Aging is associated with dysfunction in the cholinergic system, including degeneration of basal forebrain cholinergic terminals that innervate the cortex, which directly contributes to age- and disease-related cognitive decline. In this study, we used [18F]fluoroethoxybenzovesamicol ([18F]FEOBV) positron emission tomography (PET) imaging to assess the effect of age on cholinergic terminal integrity in predefined regions of interest and its relationship to cognitive performance in healthy older adults who underwent neuropsychological assessment and FEOBV PET brain imaging. Our results showed age-related reductions in FEOBV binding, particularly in the anterior cingulate cortex-our primary region of interest-as well as in the striatum, posterior cingulate cortex, and primary auditory cortex. Notably, FEOBV binding in the anterior cingulate cortex was positively correlated with cognitive performance on the NIH EXAMINER Executive Composite Score. These findings suggest that [18F]FEOBV PET imaging can be used as a reliable biomarker to assess cholinergic changes in the human brain and indicate that preserving the cholinergic integrity of the basal forebrain may help maintain cognitive function and protect against age-related cognitive decline.

摘要

衰老与胆碱能系统功能障碍相关,包括支配皮质的基底前脑胆碱能终末的退化,这直接导致与年龄和疾病相关的认知衰退。在本研究中,我们使用[18F]氟乙氧基苯并维司米可([18F]FEOBV)正电子发射断层扫描(PET)成像,来评估年龄对健康老年受试者预定义感兴趣区域内胆碱能终末完整性的影响,以及其与认知表现的关系。这些受试者接受了神经心理学评估和FEOBV PET脑成像。我们的结果显示,FEOBV结合随年龄增长而降低,特别是在我们主要感兴趣的前扣带回皮质,以及纹状体、后扣带回皮质和初级听觉皮质。值得注意的是,前扣带回皮质中的FEOBV结合与NIH EXAMINER执行综合评分的认知表现呈正相关。这些发现表明,[18F]FEOBV PET成像可作为评估人脑胆碱能变化的可靠生物标志物,并表明维持基底前脑的胆碱能完整性可能有助于维持认知功能,并预防与年龄相关的认知衰退。

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