AI Article Synopsis

  • Coronaviruses are a family of RNA viruses, with COVID-19 being caused by SARS-CoV-2, which spreads mainly through respiratory droplets and can lead to serious respiratory conditions.
  • Glutathione, an antioxidant that helps in immune response, plays a role in how severe COVID-19 symptoms can become due to its interaction with inflammatory factors during infection.
  • Research is ongoing into the use of glutathione as a potential treatment for COVID-19, as it may help reduce inflammation and lower the severity of symptoms while vaccines and monoclonal antibodies remain key methods for prevention and treatment.

Article Abstract

Coronaviruses represent a diverse family of enveloped positive-sense single stranded RNA viruses. COVID-19, caused by Severe Acute Respiratory Syndrome Coronavirus-2, is a highly contagious respiratory disease transmissible mainly via close contact and respiratory droplets which can result in severe, life-threatening respiratory pathologies. It is understood that glutathione, a naturally occurring antioxidant known for its role in immune response and cellular detoxification, is the target of various proinflammatory cytokines and transcription factors resulting in the infection, replication, and production of reactive oxygen species. This leads to more severe symptoms of COVID-19 and increased susceptibility to other illnesses such as tuberculosis. The emergence of vaccines against COVID-19, usage of monoclonal antibodies as treatments for infection, and implementation of pharmaceutical drugs have been effective methods for preventing and treating symptoms. However, with the mutating nature of the virus, other treatment modalities have been in research. With its role in antiviral defense and immune response, glutathione has been heavily explored in regard to COVID-19. Glutathione has demonstrated protective effects on inflammation and downregulation of reactive oxygen species, thereby resulting in less severe symptoms of COVID-19 infection and warranting the discussion of glutathione as a treatment mechanism.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9409103PMC
http://dx.doi.org/10.3390/ijms23169297DOI Listing

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