Role of free radical oxidation, hypoxia and their correction in COVID-19 pathogenesis

Author:
A.V. SCHULKIN, A.A. FILIMONOVA

Academician I.P. Pavlov Ryazan State Medical University of the Ministry of Healthcare of Russia

Summary:
In following review, the pathogenesis of coronavirus disease of 2019 (COVID-19), the features of the SARS-CoV-2 virus, are shown in peculiarities. Due to big importance of oxidative stress and hypoxia in the development of this infection paid to, it has been suggested that the use of antioxidants and antihypoxants in the complex treatment of COVID-19 may be useful and significantly improve the course of the disease.
Key words: COVID-19, coronaviruses, oxidative stress, hypoxia.


Antioxidants/antihypoxants: the missing puzzle piece in effective pathogenetic therapy for COVID-19

Author:
T.A. VORONINA
V.V.Zakusov Research Institute of Pharmacology, Moscow, Russian Federation

Summary:
This review focuses on the specific characteristics of COVID-19 disease, which leads not only to respiratory impairments (bronchoalveolar epithelium does not retain oxygen, etc.), but also decreases the level of hemoglobin and its ability to transfer oxygen to the organs and tissues and increases the level of heme, resulting in anoxemia, hypoxia in all organs and tissues, and oxidative stress. Mexidol, a drug developed in Russia, is widely used in clinical practice, including the treatment of diseases accompanied by ischemia and hypoxia. Mexidol has antihypoxic and antioxidant effects, can treat mitochondrial respiratory dysfunction, thereby affecting the key processes in different cells of organs and tissues that develop due to hypoxia. Mexidol can be useful in the comprehensive therapy of patients with COVID-19. Key words: COVID-19, antioxidant, antihypoxant, hemoglobin, hypoxia, Mexidol, mitochondrial dysfunction, oxidative stress.