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September 10, 2025Cell54 citationsOpen Access

Single-cell multiregion epigenomic rewiring in Alzheimer’s disease progression and cognitive resilience

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ZLZunpeng LiuSZShanshan ZhangBJBenjamin T. James

Key Points

  • Large changes in epigenomic compartments reveal crucial insights into cognitive decline during Alzheimer's disease progression.
  • Over 1 million candidate cis-regulatory elements identified across 67 cell subtypes, demonstrating the complexity of AD's epigenetic landscape.
  • Single-cell epigenomic and transcriptomic integration was performed using 3.5 million cells from 384 brain samples across multiple regions.
  • The findings highlight significant epigenomic instability associated with glial cell-state transitions and cognitive resilience in Alzheimer's disease.

Abstract

Alzheimer's disease (AD) is a neurodegenerative disorder characterized by progressive cognitive decline, yet its epigenetic underpinnings remain elusive. Here, we generate and integrate single-cell epigenomic and transcriptomic profiles of 3.5 million cells from 384 postmortem brain samples across 6 regions in 111 AD and control individuals. We identify over 1 million candidate cis-regulatory elements (cCREs), organized into 123 regulatory modules across 67 cell subtypes. We define large-scale epigenomic compartments and single-cell epigenomic information and delineate their dynamics in AD, revealing widespread epigenome relaxation and brain-region-specific and cell-type-specific epigenomic erosion signatures during AD progression. These epigenomic stability dynamics are closely associated with cell-type proportion changes, glial cell-state transitions, and coordinated epigenomic and transcriptomic dysregulation linked to AD pathology, cognitive impairment, and cognitive resilience. This study provides critical insights into AD progression and cognitive resilience, presenting a comprehensive single-cell multiomic atlas to advance the understanding of AD.

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Cite This Study

Liu et al. (2025) studied this question.

synapsesocial.com/papers/68c1a78154b1d3bfb60e0e8chttps://doi.org/10.1016/j.cell.2025.06.031
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