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Understanding Long COVID; Mitochondrial Health and Adaptation-Old Pathways, New Problems

Overview
Journal Biomedicines
Date 2022 Dec 23
PMID 36551869
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Abstract

Many people infected with the SARS-CoV-2 suffer long-term symptoms, such as "brain fog", fatigue and clotting problems. Explanations for "long COVID" include immune imbalance, incomplete viral clearance and potentially, mitochondrial dysfunction. As conditions with sub-optimal mitochondrial function are associated with initial severity of the disease, their prior health could be key in resistance to long COVID and recovery. The SARs virus redirects host metabolism towards replication; in response, the host can metabolically react to control the virus. Resolution is normally achieved after viral clearance as the initial stress activates a hormetic negative feedback mechanism. It is therefore possible that, in some individuals with prior sub-optimal mitochondrial function, the virus can "tip" the host into a chronic inflammatory cycle. This might explain the main symptoms, including platelet dysfunction. Long COVID could thus be described as a virally induced chronic and self-perpetuating metabolically imbalanced non-resolving state characterised by mitochondrial dysfunction, where reactive oxygen species continually drive inflammation and a shift towards glycolysis. This would suggest that a sufferer's metabolism needs to be "tipped" back using a stimulus, such as physical activity, calorie restriction, or chemical compounds that mimic these by enhancing mitochondrial function, perhaps in combination with inhibitors that quell the inflammatory response.

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References
1.
Kee J, Thudium S, Renner D, Glastad K, Palozola K, Zhang Z . SARS-CoV-2 disrupts host epigenetic regulation via histone mimicry. Nature. 2022; 610(7931):381-388. PMC: 9533993. DOI: 10.1038/s41586-022-05282-z. View

2.
Munro D, Baldy C, Pamenter M, Treberg J . The exceptional longevity of the naked mole-rat may be explained by mitochondrial antioxidant defenses. Aging Cell. 2019; 18(3):e12916. PMC: 6516170. DOI: 10.1111/acel.12916. View

3.
Olagnier D, Farahani E, Thyrsted J, Blay-Cadanet J, Herengt A, Idorn M . SARS-CoV2-mediated suppression of NRF2-signaling reveals potent antiviral and anti-inflammatory activity of 4-octyl-itaconate and dimethyl fumarate. Nat Commun. 2020; 11(1):4938. PMC: 7532469. DOI: 10.1038/s41467-020-18764-3. View

4.
Hannan M, Rahman M, Rahman M, Sohag A, Dash R, Hossain K . Intermittent fasting, a possible priming tool for host defense against SARS-CoV-2 infection: Crosstalk among calorie restriction, autophagy and immune response. Immunol Lett. 2020; 226:38-45. PMC: 7351063. DOI: 10.1016/j.imlet.2020.07.001. View

5.
Ganji R, Reddy P . Impact of COVID-19 on Mitochondrial-Based Immunity in Aging and Age-Related Diseases. Front Aging Neurosci. 2021; 12:614650. PMC: 7835331. DOI: 10.3389/fnagi.2020.614650. View