Associations of brain morphology with cortical proteins of cognitive resilience

Victoria N. Poole, Abdur R. Ridwan, Konstantinos Arfanakis,Robert J. Dawe, Nicholas T. Seyfried,Philip L. De Jager, Julie A. Schneider,Sue E. Leurgans, Lei Yu,David A. Bennett

NEUROBIOLOGY OF AGING(2024)

引用 0|浏览2
暂无评分
摘要
In a recent proteome-wide study, we identified several candidate proteins for drug discovery whose cortical abundance was associated with cognitive resilience to late -life brain pathologies. This study examines the extent to which these proteins are associated with the brain structures of cognitive resilience in decedents from the Religious Orders Study and Memory and Aging Project. Six proteins were associated with brain morphometric characteristics related to higher resilience (i.e., larger anterior and medial temporal lobe volumes), and five were associated with morphometric characteristics related to lower resilience (i.e., enlarged ventricles). Two synaptic proteins, RPH3A and CPLX1, remained inversely associated with the lower resilience signature, after further controlling for 10 neuropathologic indices. These findings suggest preserved brain structure in periventricular regions as a potential mechanism by which RPH3A and CPLX1 are associated with cognitive resilience. Further work is needed to elucidate other mechanisms by which targeting these proteins can circumvent the effects of pathology on individuals at risk for cognitive decline.
更多
查看译文
关键词
Aging,Cognition,Proteins,Resilience,Structural MRI,Morphometry
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要