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The myokine irisin represents an indirect pathway linking exercise to hippocampal subfields relevant to Alzheimer's disease and neurogenesis

Pace, T.; Levenstein, J. M.; Quigley, B. L.; Houston, R.; Boucas, A.; Andrews, S. C.

2025-09-12 geriatric medicine
10.1101/2025.09.09.25335471 medRxiv
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INTRODUCTIONWhile exercise is shown to reduce hippocampal atrophy, the underlying molecular mechanisms remain to be elucidated. Animal studies suggest the myokine irisin underlies exercise-related hippocampal benefits, though human evidence is lacking. METHODSWe cross-sectionally examined 74 healthy older adults (age 65.47{+/-}8.56 years). Participants completed Godin Leisure-Time exercise questionnaires, provided fasting blood for irisin measurement, and underwent structural MRI with hippocampal subfield segmentation. Hierarchical regression and mediation analyses tested irisin-mediated exercise-hippocampus relationships, controlling for age, sex, and education. RESULTSExercise positively associated with circulating irisin ({beta}=0.365, p=0.003). Irisin positively associated with bilateral hippocampal volumes (right: {beta}=0.353, p=0.001; left: {beta}=0.275, p=0.012), strongest in right-CA3 ({beta}=0.530), right-CA4/dentate gyrus ({beta}=0.471), and bilateral CA1 ({beta}=0.336-0.373) subfields. Mediation analysis revealed all exercise-hippocampus relationships operated indirectly through irisin. DISCUSSIONThis study provides first human evidence that irisin is a molecular mechanism linking exercise to hippocampal volume, particularly in subfields critical for memory, neurogenesis, and Alzheimers pathology.

Published in Aging Cell (predicted rank #4) · training set

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