The age-dependent decline of the extracellular thiol-disulfide balance and its role in SARS-CoV-2 infection.
Redox Biol
; 41: 101902, 2021 05.
Article
in English
| MEDLINE | ID: covidwho-1087240
Semantic information from SemMedBD (by NLM)
1. Equilibrium ASSOCIATED_WITH COVID-19
2. 2019 novel coronavirus CAUSES Respiratory Distress Syndrom
3. Present COEXISTS_WITH COVID-19
4. Complication COEXISTS_WITH Disease
5. other medicated shampoos in ATC COEXISTS_WITH human plasma
6. glutathione PART_OF Lung
7. Age ASSOCIATED_WITH Lung diseases
8. COVID-19 PROCESS_OF Patients
9. Equilibrium ASSOCIATED_WITH COVID-19
10. 2019 novel coronavirus CAUSES Respiratory Distress Syndrome, Newborn
11. Present COEXISTS_WITH COVID-19
12. Complication COEXISTS_WITH Disease
13. other medicated shampoos in ATC COEXISTS_WITH human plasma
14. glutathione PART_OF Lung
15. Age ASSOCIATED_WITH Lung diseases
16. COVID-19 PROCESS_OF Patients
ABSTRACT
SARS-CoV-2 (COVID-19) infection can cause a severe respiratory distress syndrome. The risk of severe manifestations and mortality characteristically increase in the elderly and in the presence of non-COVID-19 comorbidity. We and others previously demonstrated that the low molecular weight (LMW) and protein thiol/disulfide ratio declines in human plasma with age and such decline is even more rapid in the case of inflammatory and premature aging diseases, which are also associated with the most severe complications of COVID-19 infection. The same decline with age of the LMW thiol/disulfide ratio observed in plasma appears to occur in the extracellular fluids of the respiratory tract and in association with many pulmonary diseases that characteristically reduce the concentrations and adaptive stress response of the lung glutathione. Early evidence in literature suggests that the thiol to disulfide balance of critical Cys residues of the COVID-19 spike protein and the ACE-2 receptor may influence the risk of infection and the severity of the disease, with a more oxidizing environment producing the worst prognosis. With this hypothesis paper we propose that the age-dependent decline of LMW thiol/disulfide ratio of the extracellular fluids, could play a role in promoting the physical (protein-protein) interaction of CoV-2 and the host cell in the airways. Therefore, this redox-dependent interaction is expected to affect the risk of severe infection in an age-dependent manner. The hypothesis can be verified in experimental models of in vitro CoV-2 infection and at the clinical level in that LMW thiols and protein thiolation can now be investigated with standardized, reliable and versatile laboratory protocols. Presenting the verification strategy of our hypothesis, we also discuss available nutritional and ancillary pharmacological strategies to intervene on the thiol/disulfide ratio of extracellular fluids of subjects at risk of infection and COVID-19 patients.
Keywords
Full text:
Available
Collection:
International databases
Database:
MEDLINE
Main subject:
Sulfhydryl Compounds
/
COVID-19
Type of study:
Prognostic study
Limits:
Aged
/
Humans
Language:
English
Journal:
Redox Biol
Year:
2021
Document Type:
Article
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