Skeletal muscle mitochondrial respiration in a model of age-related osteoarthritis is impaired after dietary rapamycin.

Exp Gerontol

Department of Medicine, Division of Geriatrics and Gerontology, University of Wisconsin-Madison, United States of America; Geriatric Research, Education, and Clinical Center, William S. Middleton Memorial Veterans Hospital, United States of America; Department of Kinesiology and Community Health, University of Illinois at Urbana-Champaign, United States of America. Electronic address:

Published: November 2021

A decline in skeletal muscle mitochondrial function is associated with the loss of skeletal muscle size and function during knee osteoarthritis (OA). We have recently reported that 12-weeks of dietary rapamycin (Rap, 14 ppm), with or without metformin (Met, 1000 ppm), increased plasma glucose and OA severity in male Dunkin Hartley (DH) guinea pigs, a model of naturally occurring, age-related OA. The purpose of the current study was to determine if increased OA severity after dietary Rap and Rap+Met was accompanied by impaired skeletal muscle mitochondrial function. Mitochondrial respiration and hydrogen peroxide (HO) emissions were evaluated in permeabilized muscle fibers via high-resolution respirometry and fluorometry using either a saturating bolus or titration of ADP. Rap and Rap+Met decreased complex I (CI)-linked respiration and tended to increase ADP sensitivity, consistent with previous findings in patients with end-stage OA. The decrease in CI-linked respiration was accompanied with lower CI protein abundance. Rap and Rap+Met did not change mitochondrial HO emissions. There were no differences between mitochondrial function in Rap versus Rap+Met suggesting that Rap was likely driving the change in mitochondrial function. This is the first inquiry into how lifespan extending treatments Rap and Rap+Met can influence skeletal muscle mitochondria in a model of age-related OA. Collectively, our data suggest that Rap with or without Met inhibits CI-linked capacity and increases ADP sensitivity in DH guinea pigs that have greater OA severity.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8560569PMC
http://dx.doi.org/10.1016/j.exger.2021.111579DOI Listing

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