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April 17, 2026Journal of Alzheimer s Disease0 citationsOpen Access

Systematic identification of cell-cell interactions associated with the severity of patients with Alzheimer's disease

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ZZZijian ZhangNCNaail ChowdhuryJDJing Dong

Key Points

  • This study aims to understand how interactions between different cell types affect the progression and severity of Alzheimer's disease.
  • Used transcriptome profiling to analyze cellular interactions in the brain.
  • Applied a statistical framework for mapping intercellular communication.
  • Examined the relationship between cell-cell interactions and clinical dementia ratings.
  • Identified a variety of AD-associated cell-cell interactions involving neurons and glial cells.
  • Found stronger correlations between dementia severity and interactions in the temporal and frontal cortices.
  • Highlighted specific dementia-associated interactions in the inferior and middle temporal gyrus.

Abstract

BackgroundAlzheimer's disease (AD) is a complex, multifactorial neurodegenerative disorder involving dysfunction across multiple brain regions. While accumulating evidence has implicated the roles of diverse cell types, including neurons, glia, and vascular cells in AD pathogenesis, it is still poorly understood how cell type interactions drive or respond to the disease progression and severity.ObjectiveThis study aimed to systematically characterize cell-type-specific alterations and intercellular communication changes associated with AD progression.MethodsWe leveraged the transcriptome profiling and a previously established statistical framework to present a comprehensive mapping of the cellular interaction landscape in the human brain of AD.ResultsWe identified a wide array of AD-associated cell-cell interactions (CCIs), including not only between the non-neuronal and neuron cells, but also among different neuron subtypes. These patterns were further supported by cell-type signature scoring. Moreover, due to the flexibility of the framework, we further examined CCIs associated with clinical dementia rating across multiple cortical regions. Our findings revealed that the temporal and frontal cortices showed a stronger correlation with dementia severity. However, the subregions of the temporal area show specific dementia-associated CCIs, especially between the inferior and middle temporal gyrus.ConclusionsOur work advances our understanding of the cellular microenvironment in AD, offering novel insights into how intercellular interactions shape disease trajectory and cognitive outcomes.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/69e1cefb5cdc762e9d857e84https://doi.org/10.1177/13872877261441603
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