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Nature medicine
Published

Oligodendrocyte dysfunction in human age-related cognitive decline

Authors

Georgina A Craig, Emeric Merour, Luise A Seeker, Annette J Haughian, Keon Arbabi, Jamie Rose, Alana Hoffmann, Jessica Thapar, Andrea Corsinotti, Stephen Mitchell, Janie Corley, Susan D Shenkin, Colin Smith, Tara L Spires-Jones, Lu O Sun, Simon R Cox, Anna Williams, Shreejoy J Tripathy, Brian Popko, Véronique E Miron

Abstract

Nat Med. 2026 Aug 25. doi: 10.1038/s41591-026-04608-y. Online ahead of print.

ABSTRACT

Cognitive decline in aging impacts quality of life, for which therapeutic interventions are lacking. Why some individuals experience more severe cognitive decline with aging is unclear. Here we uncover a role for the brain's myelin-forming cells-oligodendrocytes-in explaining this variance. By investigating neuropathological and transcriptomic changes in human white matter associated with individual rates of cognitive decline in aging, we find that worse cognitive trajectories unexpectedly associate with smaller myelinated axon size, thicker myelin and more oligodendrocytes with downregulation of NRF2. Aged oligodendrocyte-specific NRF2-knockout mice showed attenuated cognitive improvement over time and mirrored the white matter pathology of human cognitive decline in aging. These findings place the oligodendrocyte as a contributor to cognitive decline and highlight the NRF2 pathway as a therapeutic target to preserve cognition in human aging.

PMID:42642661 | DOI:10.1038/s41591-026-04608-y

UK DRI Authors

Jamie Rose

Lab Manager & Senior Technician

Jamie Rose
Anna Williams

Prof Anna Williams

UK DRI Affiliate Member - Edinburgh

Professor of Regenerative Neurology, University of Edinburgh

Prof Anna Williams