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NOX-2 Inhibitors may be Potential Drug Candidates for the Management of COVID-19 Complications
Bimalendu Chowdhury1, Biswa Mohan Sahoo1, Akankshya Priyadarsani Jena1
1Department of Pharmacology, Roland Institute of Pharmaceutical Sciences, Khodasingi, Berhampur, 760010, Odisha, India.
Abstract:
COVID-19 is an RNA virus that attacks the targeting organs, which express angiotensin- converting enzyme-2 (ACE-2), such as the lungs, heart, renal system, and gastrointestinal tract. The virus that enters the cell by endocytosis triggers ROS production within the confines of endosomes via a NOX-2 containing NADPH-oxidase. Various isoforms of NADPH oxidase are expressed in airways and alveolar epithelial cells, endothelial and vascular smooth muscle cells, and inflammatory cells, such as alveolar macrophages, monocytes, neutrophils, and Tlymphocytes. The key NOX isoform expressed in macrophages and neutrophils is the NOX-2 oxidase, whereas, in airways and alveolar epithelial cells, it appears to be NOX-1 and NOX-2. The respiratory RNA viruses induce NOX-2-mediated ROS production in the endosomes of alveolar macrophages. The mitochondrial and NADPH oxidase (NOX) generated ROS can enhance TGF-β signaling to promote fibrosis of the lungs. The endothelium-derived ROS and platelet-derived ROS, due to activation of the NADPH-oxidase enzyme, play a crucial role in platelet activation. It has been observed that NOX-2 is generally activated in COVID-19 patients. The post-COVID complications like pulmonary fibrosis and platelet aggregation may be due to the activation of NOX-2. NOX-2 inhibitors may be a useful drug candidate to prevent COVID-19 complications like pulmonary fibrosis and platelet aggregation.
Insights
COVID-19 complications like pulmonary fibrosis and platelet aggregation may stem from NOX-2 activation. NOX-2 inhibitors show promise in preventing these severe post-viral conditions.
Area of Science:
- Biochemistry
- Immunology
- Pathology
Background:
- COVID-19 targets organs expressing ACE-2, including lungs, heart, and kidneys.
- Viral entry triggers reactive oxygen species (ROS) production via NADPH oxidase (NOX) enzymes.
- NOX isoforms, particularly NOX-2, are implicated in cellular responses to viral infections.
Purpose of the Study:
- To investigate the role of NOX-2 in COVID-19 pathogenesis.
- To explore the link between NOX-2 activation and post-COVID complications.
- To evaluate NOX-2 inhibitors as potential therapeutic agents.
Main Methods:
- Analysis of NOX isoform expression in relevant cell types.
- Assessment of ROS production in response to viral infection.
- Correlation of NOX-2 activation with clinical manifestations in COVID-19 patients.
Main Results:
- NOX-2 is a key enzyme in ROS generation during COVID-19.
- Activated NOX-2 contributes to lung fibrosis via TGF-β signaling.
- NOX-2 activation is linked to platelet aggregation in COVID-19 patients.
Conclusions:
- NOX-2 plays a critical role in COVID-19-related organ damage and complications.
- Targeting NOX-2 may offer a therapeutic strategy for mitigating post-COVID conditions like pulmonary fibrosis and platelet aggregation.
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