‘Supportive’ brain cells may drive cognitive decline, study finds
26 Aug 2026
Brain cells that produce the protective coating around nerve fibres can become dysfunctional with age and may actively contribute to cognitive decline, according to new research.
A study1 found that people with more severe cognitive decline had changes to nerve fibres and myelin – the protective coating around nerve fibres that helps messages travel efficiently through the brain.
Experiments in mice showed that disrupting oligodendrocytes – the cells that produce myelin – also altered the coating and impaired cognitive performance.
Experts say the findings overturn the longstanding view that these cells are always supportive of healthy brain function and could pave the way for new treatments targeting oligodendrocyte dysfunction to help protect cognition in later life.
Researchers from the University of Edinburgh and UK Dementia Research Institute initially analyzed brain tissue from the Lothian Birth Cohort 1936, whose members have had their cognitive abilities assessed from childhood into older age.
Cognitive performance was measured from age 70 to 82 using tests covering memory, processing speed and spatial skills.
Of 1,091 people in the cohort, 866 had follow-up cognitive testing after age 70. Almost all experienced some degree of cognitive decline, allowing researchers to compare brain changes in people whose decline was faster or slower than average.
When looking directly at post mortem brain tissue from a subset of participants, they found that more severe cognitive decline was associated with fewer large nerve fibres and excess, unhealthy myelin, particularly around the larger fibres that remained.
These changes were linked to the rate of cognitive decline rather than a person’s cognitive ability at any particular time.
The researchers then found that people with more severe cognitive decline had reduced levels of the protein NRF2 in oligodendrocytes. NRF2 regulates hundreds of genes involved in protecting cells from damage and maintaining healthy cellular function.
Experiments in mice showed that reducing NRF2 specifically in oligodendrocytes caused excess myelin and reduced large nerve fibres. It also impaired improvements in cognitive performance as the mice aged.
The findings suggest that reduced NRF2 activity can drive oligodendrocyte dysfunction, contributing to changes in myelin and nerve fibres associated with cognitive decline during ageing.
The NRF2 pathway is already targeted by drugs including one that treats multiple sclerosis (MS). Previous research has shown that activating NRF2 can improve cognitive function in people with MS, raising the possibility that existing treatments could eventually be repurposed to target oligodendrocyte dysfunction and cognitive decline in ageing.
Veronique Miron, MRC Senior Non-Clinical Fellow and UK Dementia Research Institute Group Leader at the University of Edinburgh’s Institute for Neuroscience and Cardiovascular Research, said, “As the prevalence of cognitive decline is rising with an ageing population and no current treatments exist, we are excited about this work as it points to a potential strategy for new therapeutic strategies to preserve cognitive ability in ageing.”
Georgina Craig, first author of the study and Postdoctoral Fellow at St Michael’s Hospital in Toronto and the UK Dementia Research Institute, said, “This study has fundamentally shifted how we think about these brain cells in ageing. We have always considered oligodendrocytes as purely beneficial, yet here we surprisingly find that they can become dysfunctional and contribute to cognitive impairment in ageing.”
References
1. Craig GA, Merour E, Seeker LA et al. Oligodendrocyte dysfunction in human age-related cognitive decline. Nat Med (2026). https://doi.org/10.1038/s41591-026-04608-y
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How can oligodendrocyte dysfunction contribute to age-related cognitive decline?
Oligodendrocytes produce myelin, the protective coating around nerve fibres. The study linked severe cognitive decline to dysfunctional oligodendrocytes, excess unhealthy myelin and fewer large nerve fibres, challenging the view that these brain cells are always beneficial.
What role does the NRF2 protein play in oligodendrocytes and cognitive ageing?
NRF2 regulates hundreds of genes that protect cells and maintain healthy function. People with more severe cognitive decline had lower NRF2 levels in oligodendrocytes. Reducing NRF2 in mice caused excess myelin, fewer large nerve fibres and impaired cognitive improvement during ageing.
Could existing multiple sclerosis drugs help treat cognitive decline in ageing?
The NRF2 pathway is already targeted by drugs, including a multiple sclerosis treatment. Because previous research found that NRF2 activation can improve cognitive function in people with MS, researchers suggest existing treatments might eventually be repurposed to target oligodendrocyte dysfunction and age-related cognitive decline.