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Review
. 2021 Jun:256:110929.
doi: 10.1016/j.cbpa.2021.110929. Epub 2021 Feb 26.

Fasting ameliorates oxidative stress: A review of physiological strategies across life history events in wild vertebrates

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Review

Fasting ameliorates oxidative stress: A review of physiological strategies across life history events in wild vertebrates

David C Ensminger et al. Comp Biochem Physiol A Mol Integr Physiol. 2021 Jun.

Abstract

Fasting is a component of many species' life history due to environmental factors or behavioral patterns that limit access to food. Despite metabolic and physiological challenges associated with these life history stages, fasting-adapted wild vertebrates exhibit few if any signs of oxidative stress, suggesting that fasting promotes redox homeostasis. Here we review mammalian, avian, reptilian, amphibian, and piscine examples of animals undergoing fasting during prolonged metabolic suppression (e.g. hibernation and estivation) or energetically demanding processes (e.g. migration and breeding) to better understand the mechanisms underlying fasting tolerance in wild vertebrates. These studies largely show beneficial effects of fasting on redox balance via limited oxidative damage. Though some species exhibit signs of oxidative stress due to energetically or metabolically extreme processes, fasting wild vertebrates largely buffer themselves from the negative consequences of oxidative damage through specific strategies such as elevating antioxidants, selectively maintaining redox balance in critical tissues, or modifying behavioral patterns. We conclude with suggestions for future research to better elucidate the protective effects of fasting on oxidative stress as well as disentangle the impacts from other life history stages. Further research in these areas will facilitate our understanding of the mechanisms wild vertebrates use to mitigate the negative impacts associated with metabolically-extreme life history stages as well as potential translation into therapeutic interventions in non-fasting-adapted species including humans.

Keywords: Antioxidants; Lipid peroxidation; Reactive oxygen species; Redox balance; Starvation.

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