Possibilities of intervention in the sars-cov-2 metabolism.

Possibilities of intervention in the sars-cov-2 metabolism.

Authors

  • Václav Holeček MD., PhD.* Mulac Hospital, Plzeň 30100, Dvorakova 1207/17, Czech Republic

Abstract

In addition to epidemiological resources and vaccines, the virus's defenses need to be compromised in order to weaken the coronavirus pandemic. These include oxidative stress, mutations, and processing of acetyl-CoA for lipid synthesis instead of glycolysis. Antioxidants with low redox potential, selenium or iodides and fenofibrate can be used for this, which reduces the formation of malondialdehyde from lipoperoxidation. Theoretically malondialdehyde can bind to the amino group of proteins (immunoglobulins or vaccine protein) and thus protect the virus.

References

(Grothman on Fenofibrate’s Effect on COVID-19 | https://grothman.house.gov/news/ documentsingle.aspx?DocumentID=1669

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Suhail S, Zajac J, Fossum C, et al.: Role of Oxidative Stress on SARS-CoV (SARS) and SARS-CoV-2 (COVID-19) Infection. Protein J. 2020;39(6):644-656. doi: 10.1007/ s10930-020-09935-8.

Beltrán-García J, Osca-Verdegal R, Pallardó FV,et al.: Oxidative Stress and Inflammation in COVID-19- Associated Sepsis: The Potential Role of Anti- Oxidant Therapy in Avoiding Disease Progression. Antioxidants (Basel). 2020; 29;9(10):936. doi: 10.3390/antiox9100936.

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Published

2022-05-08

How to Cite

1.
Possibilities of intervention in the sars-cov-2 metabolism. Journal of Otolaryngology and Rhinology Research [Internet]. 2022 May 8 [cited 2024 Sep. 19];3(02):84-5. Available from: http://jorr.info/index.php/jorr/article/view/46