ArticleEBioMedicine2025
Gut microbiota regulates exercise-induced hormetic modulation of cognitive function.
Article in EBioMedicine, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers, 1 of them a synthesis that pooled it.
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15 citing papers in PubMed, 1 synthesis or guideline pooled it.
- Global research trends and hotspots of short-chain fatty acids in cognitive impairment: a bibliometric analysis based on two databases.Frontiers in medicine · 2026Pooled it
- The combined effects of probiotic and high-intensity interval training on memory function in high fat diet-fed rats.Behavioral and brain functions : BBF · 2026Article
- Nutrition and gut-brain axis: opposing effects of dietary fiber and Western-style diets on Alzheimer's disease.Current opinion in clinical nutrition and metabolic care · 2026Review
- The Gut-Brain-Muscle Axis: Microbial Regulation of Neuromuscular Aging and Cognitive Frailty.Microorganisms · 2026Review
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- Combined Effect ofFoods (Basel, Switzerland) · 2026Article
- Molecules of mood: the integrated molecular transducers of exercise's antidepressant effects.Molecular genetics and genomics : MGG · 2026Review
- Double-Pronged NAD Preservation: Delaying Cellular Senescence and Initiating Musculoskeletal Regeneration.Aging cell · 2026 · on this mapArticle
- Optimal gut-brain equilibrium: moderate physical activity, microbiome, and the hormetic pathway to cognitive wellbeing.Frontiers in microbiology · 2026Article
- The neuro-immuno-metabolic axis of exercise: a unified mechanistic framework for exercise-induced cognitive enhancement and psychological resilience.Frontiers in psychology · 2026Review
- Exercise prescription for mood and cognition: targeting the microbiota-gut-brain axis through short-chain fatty acids.Frontiers in microbiology · 2026Review
- Microbial metabolite trimethylamine-N-oxide facilitates colorectal inflammation-cancer transformation by blocking lysosomal degradation of Wnt signaling.Gut microbes · 2025Article
- Age-dependent effects of exercise on gut microbiota-mitochondria axis and cognitive function in aging mice.Journal of exercise rehabilitation · 2025Article
- Exercise and Diet Reshape Athletes' Gut Microbiota: Countering Health Challenges in Athletes.Life (Basel, Switzerland) · 2025Review
- From Electron Imbalance to Network Collapse: Decoding the Redox Code of Ischemic Stroke for Biomarker-Guided Precision Neuroprotection.International journal of molecular sciences · 2025Review
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13 authors.
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Abstract
backgroundLifestyle factors, particularly physical exercise, significantly influence brain structure and cognitive function through a hormetic effect -a phenomenon where low to moderate doses of a stimulus (in this case, exercise) induce beneficial adaptations, while excessive doses could lead to detrimental effects. This effect depends on exercise intensity and duration, though the underlying mechanisms remain largely unexplored. Recently, the gut microbiota has emerged as potent modulator of lifestyle-induced changes in brain and behaviour.
methodsWe used a 40-min, 1200 cm/min exercise protocol. We measured cognition through several tests and analysed microbiota composition comparing adult exercised animals to sedentary controls. Finally, we performed fecal microbiota transplantation from exercised to sedentary mice.
findingsExercise enhances cognitive abilities related to object recognition and object location memory, as well as increases hippocampal neurogenesis. However, these cognitive and neurogenic benefits vanish when the exercise intensity or duration is increased. Furthermore, we identified significant changes in alpha and beta diversity and distinct bacteria composition profiles in the gut microbiota associated with different exercise regimens. Specific bacterial families showed altered relative abundances depending on exercise intensity and duration, with certain families' quantities significantly correlating with cognitive performance (Angelakisella, Acetatifactor, Erysipelatoclostridium, and Coriobacteriaceae UCG-002.). To explore causal mechanisms, we performed fecal microbiota transplantation from exercised to sedentary mice, which replicated the cognitive and neurogenic changes observed in the donor animals.
interpretationThese findings suggest that the hormetic effects of physical exercise on cognitive function and neurogenesis are mediated by corresponding changes in the gut microbiota, highlighting a novel mechanistic link between exercise, brain function, and gut microbiota composition.
fundingE.C. and P.M. were funded by predoctoral fellowship (FPI) grants from the Spanish Ministry of Economy and Competitiveness (BES-2017/080415 E.C.) and the Spanish Ministry of Science and Innovation (PRE2020/093032 P.M.), and P.T. by a predoctoral fellowship (FPU) from the Spanish Ministry of Universities (18/00069). Work was supported by project grants PID2019-110292RB-100 and PID2022-136891NB-I00 (from Spanish Ministry of Science and Innovation), (to J.L.T.).
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