Single-cell atlas reveals correlates of high cognitive function, dementia, and resilience to Alzheimer's disease pathology

单细胞图谱揭示高认知功能、痴呆和阿尔茨海默病病理恢复力之间的相关性

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作者:Hansruedi Mathys, Zhuyu Peng, Carles A Boix, Matheus B Victor, Noelle Leary, Sudhagar Babu, Ghada Abdelhady, Xueqiao Jiang, Ayesha P Ng, Kimia Ghafari, Alexander K Kunisky, Julio Mantero, Kyriaki Galani, Vanshika N Lohia, Gabrielle E Fortier, Yasmine Lotfi, Jason Ivey, Hannah P Brown, Pratham R Pate

Abstract

Alzheimer's disease (AD) is the most common cause of dementia worldwide, but the molecular and cellular mechanisms underlying cognitive impairment remain poorly understood. To address this, we generated a single-cell transcriptomic atlas of the aged human prefrontal cortex covering 2.3 million cells from postmortem human brain samples of 427 individuals with varying degrees of AD pathology and cognitive impairment. Our analyses identified AD-pathology-associated alterations shared between excitatory neuron subtypes, revealed a coordinated increase of the cohesin complex and DNA damage response factors in excitatory neurons and in oligodendrocytes, and uncovered genes and pathways associated with high cognitive function, dementia, and resilience to AD pathology. Furthermore, we identified selectively vulnerable somatostatin inhibitory neuron subtypes depleted in AD, discovered two distinct groups of inhibitory neurons that were more abundant in individuals with preserved high cognitive function late in life, and uncovered a link between inhibitory neurons and resilience to AD pathology.

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