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铁-多巴胺 D1 偶联调节成年期工作记忆的神经特征。

The iron-dopamine D1 coupling modulates neural signatures of working memory across adult lifespan.

机构信息

Aging Research Center, Karolinska Institutet and Stockholm University, Sweden.

Faculty of Medicine, Department of Radiation Sciences, Umeå University, Sweden; Umeå Center for Functional Brain Imaging, Umeå University, Umeå, Sweden.

出版信息

Neuroimage. 2023 Oct 1;279:120323. doi: 10.1016/j.neuroimage.2023.120323. Epub 2023 Aug 13.

Abstract

Brain iron overload and decreased integrity of the dopaminergic system have been independently reported as brain substrates of cognitive decline in aging. Dopamine (DA), and iron are co-localized in high concentrations in the striatum and prefrontal cortex (PFC), but follow opposing age-related trajectories across the lifespan. DA contributes to cellular iron homeostasis and the activation of D1-like DA receptors (D1DR) alleviates oxidative stress-induced inflammatory responses, suggesting a mutual interaction between these two fundamental components. Still, a direct in-vivo study testing the iron-D1DR relationship and their interactions on brain function and cognition across the lifespan is rare. Using PET and MRI data from the DyNAMiC study (n=180, age=20-79, %50 female), we showed that elevated iron content was related to lower D1DRs in DLPFC, but not in striatum, suggesting that dopamine-rich regions are less susceptible to elevated iron. Critically, older individuals with elevated iron and lower D1DR exhibited less frontoparietal activations during the most demanding task, which in turn was related to poorer working-memory performance. Together, our findings suggest that the combination of elevated iron load and reduced D1DR contribute to disturbed PFC-related circuits in older age, and thus may be targeted as two modifiable factors for future intervention.

摘要

脑铁过载和多巴胺能系统完整性下降已被独立报道为衰老过程中认知能力下降的脑基础。多巴胺 (DA) 和铁在纹状体和前额叶皮层 (PFC) 中高度集中共存,但在整个生命周期中遵循相反的与年龄相关的轨迹。DA 有助于细胞铁稳态,D1 样 DA 受体 (D1DR) 的激活减轻氧化应激诱导的炎症反应,这表明这两个基本成分之间存在相互作用。尽管如此,很少有直接的体内研究测试铁-D1DR 关系及其在整个生命周期中对大脑功能和认知的相互作用。使用 DyNAMiC 研究的 PET 和 MRI 数据(n=180,年龄=20-79,%50 为女性),我们表明,DLPFC 中升高的铁含量与较低的 D1DR 相关,但在纹状体中没有,这表明富含多巴胺的区域对升高的铁不太敏感。至关重要的是,铁含量升高和 D1DR 降低的老年个体在最具挑战性的任务中表现出较少的顶枕部激活,这反过来又与较差的工作记忆表现有关。总之,我们的研究结果表明,铁负荷升高和 D1DR 降低的组合导致老年时 PFC 相关回路紊乱,因此可能成为未来干预的两个可调节因素。

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