4.7 Article

Physiologically-obtainable polyphenol exposures modulate reactive oxygen and nitrogen species signaling in the C2C12 model of skeletal muscle ageing

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EUROPEAN JOURNAL OF PHARMACOLOGY
卷 941, 期 -, 页码 -

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ELSEVIER
DOI: 10.1016/j.ejphar.2023.175511

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RONS; Skeletal muscle ageing; Dietary polyphenols; Oxidative stress

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Age-related frailty is a significant health and social care burden, and there is a lack of suitable cell culture model for screening compounds to promote healthy skeletal muscle function. This study used C2C12 cells to characterize the changes in reactive oxygen and nitrogen species (RONS) signaling in young and aged myoblasts and myotubes, and assessed the effect of dietary polyphenols on RONS signaling in aged cultures. The findings showed increased RONS levels in aged cells and identified kaempferol and resveratrol as compounds that can modulate RONS signaling in skeletal muscle cells.
Age-related frailty is a significant health and social care burden, with limited treatment options. There is a lack of suitable cell culture model for screening large numbers of test compounds to identify those which promote healthy skeletal muscle function. This paper describes the characterization of reactive oxygen and nitrogen species (RONS) signalling changes in young and aged myoblasts and myotubes using C2C12 cells, and the application of aged cultures to assess the effect of dietary polyphenols on RONS signalling. Aged myoblasts and myotubes showed significantly increased reactive oxygen species (p < 0.01 and p < 0.001 respectively), nitric oxide (p < 0.05 for myoblasts and myotubes), and lipid peroxidation (p < 0.05 for myoblasts and myotubes). Nine polyphenols were assessed in aged myoblasts and myotubes using concentrations and incubation times consistent with known pharmacokinetic parameters for these compounds. Although several polyphenols were seen to reduce single markers of RONS signalling, only kaempferol and resveratrol significantly reduced multiple markers in both cell models. Modulation of enzymatic antioxidant activities was assessed as a possible mecha-nism of action, although superoxide dismutase and catalase activities were significantly reduced in aged (versus young) myotubes (p < 0.01 and p < 0.05 respectively), no effect of polyphenol treatment on these enzyme activities were observed. Overall, this research has shown the utility of the C2C12 model (myoblasts and myo-tubes) for screening compounds in aged muscle, and that resveratrol and kaempferol (using pharmacokinetically-informed exposures) can modulate RONS signalling in skeletal muscle cells after an acute exposure.

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