Highlights
• HIIT and Gly interventions increased intestinal villus length and cuprocyte density, improved intestinal senescence markers, decreased pro-inflammatory factor expression, and improved age-associated intestinal barrier integrity in aged mice, and Gly gained HIIT resistance to aging-associated intestinal homeostasis more significantly.
• The HIIT and Gly interventions were able to remodel age-related ecological dysregulation of gut microbiota and metabolites, and inhibit lipid peroxidation and modulate ferroptosis resistance expression in aged mice.
• Changes in gut microbiota and metabolites induced by HIIT and Gly interventions may play an important role in the regulation of physiological functions related to resistance to aging in aged mice.

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