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Spatially convergent functional MRI signatures of diabetes and male sex identify genetic vulnerabilities to accelerated brain ageing.

Created on 25 Sep 2026

Authors

Anthony G Chesebro, Luna R Rohm, Botond B Antal, Corey Weistuch, Helmut H Strey, Eva-Maria Ratai, David T Jones, Lilianne R Mujica-Parodi

Published in

Brain communications. Volume 8. Issue 5. Pages fcag347. Epub Sep 19, 2026.

Abstract

Age-related cognitive decline results from complex interactions between neuroendocrine and neurometabolic processes that undergo lifelong degradation, yet the mechanisms underlying these interactions remain poorly understood. This study examined the effects of diabetes and sex on functional brain networks across ageing through analysis of two large cohorts (N = 1621 total) using both 3T and 7T functional MRI, complemented by spatial transcriptomic data from over 14 000 genes from six post-mortem brains. Four networks-cingulo-opercular, default mode, salience and lateral somatomotor-exhibited significant functional decline in both individuals with diabetes and independently in males. Gene expression analysis of vulnerable networks revealed significant over-expression of insulin-dependent glucose transporters, dopaminergic and GABAergic synaptic genes and VEGFA-VEGFR2 pathway components. These findings suggest functionally-specific circuit vulnerability to metabolic and hormonal dysregulation, potentially offering targets for early intervention before irreversible neurodegeneration occurs.

PMID:
42781427
Bibliographic data and abstract were imported from PubMed on 25 Sep 2026.

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