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多巴胺受体可用性在成年期的区域差异下降:年龄的线性和非线性影响。

Differential regional decline in dopamine receptor availability across adulthood: Linear and nonlinear effects of age.

机构信息

Center for the Study of Aging and Human Development, Duke University, Durham, North Carolina.

Center for Cognitive Neuroscience, Duke University, Durham, North Carolina.

出版信息

Hum Brain Mapp. 2019 Jul;40(10):3125-3138. doi: 10.1002/hbm.24585. Epub 2019 Apr 1.

Abstract

Theories of adult brain development, based on neuropsychological test results and structural neuroimaging, suggest differential rates of age-related change in function across cortical and subcortical sub-regions. However, it remains unclear if these trends also extend to the aging dopamine system. Here we examined cross-sectional adult age differences in estimates of D2-like receptor binding potential across several cortical and subcortical brain regions using PET imaging and the radiotracer [ F]Fallypride in two samples of healthy human adults (combined N = 132). After accounting for regional differences in overall radioligand binding, estimated percent difference in receptor binding potential by decade (linear effects) were highest in most temporal and frontal cortical regions (6-16% per decade), moderate in parahippocampal gyrus, pregenual frontal cortex, fusiform gyrus, caudate, putamen, thalamus, and amygdala (3-5%), and weakest in subcallosal frontal cortex, ventral striatum, pallidum, and hippocampus (~0-2%). Some regions showed linear effects of age while many showed curvilinear effects such that binding potential declined from young adulthood to middle age and then was relatively stable until old age. Overall, these data indicate that the rate and pattern of decline in D2 receptor availability is regionally heterogeneous. However, the differences across regions were challenging to organize within existing theories of brain development and did not show the same pattern of regional change that has been observed in gray matter volume, white matter integrity, or cognitive performance. This variation suggests that existing theories of adult brain development may need to be modified to better account for the spatial dynamics of dopaminergic system aging.

摘要

基于神经心理学测试结果和结构神经影像学的成人大脑发育理论表明,皮质和皮质下亚区的功能与年龄相关的变化率存在差异。然而,这些趋势是否也延伸到衰老的多巴胺系统仍不清楚。在这里,我们使用 PET 成像和放射性示踪剂 [ F]Fallypride 在两个健康成年人样本中检查了几个皮质和皮质下脑区的 D2 样受体结合潜能的横断面成人年龄差异(合并 N=132)。在考虑了总体放射性配体结合的区域差异后,按十年估计的受体结合潜能的百分比差异(线性效应)在大多数颞叶和额叶皮质区域最高(每十年约 6-16%),在海马旁回、额前皮质、梭状回、尾状核、壳核、丘脑和杏仁核中等(每十年 3-5%),在胼胝体下额叶皮质、腹侧纹状体、苍白球和海马体最低(每十年 0-2%)。一些区域表现出与年龄的线性效应,而许多区域表现出曲线效应,即结合潜能从年轻成年期下降到中年,然后相对稳定直到老年。总的来说,这些数据表明 D2 受体可用性的下降速度和模式在区域上是不均匀的。然而,跨区域的差异在现有的大脑发育理论中难以组织,并且与灰质体积、白质完整性或认知表现观察到的区域变化模式不同。这种变异表明,现有的成人大脑发育理论可能需要修改,以更好地解释多巴胺能系统衰老的空间动态。

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