Intercellular signaling and synaptic deconstruction uncovered by single-cell and spatial transcriptomics in an AD tauopathy model

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Abstract

Alzheimer’s disease (AD) is the leading cause of dementia in elderly individuals worldwide; however, all mechanisms leading to disease onset and progression are not well understood. Here, we report brain single-cell multiome and spatial transcriptomics in a transgenic rat model of human-like tauopathy. We have identified new markers of tau-driven AD pathology and provided single-cell evidence for genes implicated in AD. Our findings reveal how tau hyperphosphorylation and aging alter ligand-receptor communication, transcription factor regulatory networks, and specific cellular networks. Notably, we found intriguing changes in cell communication involving glutamatergic transmission and Netrin signaling as a taupathy consequence. Overall, this study reinforces the concept that synaptic dysfunction is a critical early event in AD and highlights potential targets as potential therapeutic strategies.

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Ji, J. X., Giles, B. L., Bhattacharjee, S., Kautzmann, M. A. I., P. Masson, A., Do Carmo, S., … Bazan, N. G. (2025). Intercellular signaling and synaptic deconstruction uncovered by single-cell and spatial transcriptomics in an AD tauopathy model. Communications Biology, 8(1). https://doi.org/10.1038/s42003-025-08959-z

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