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Roles of flavonoids against coronavirus infection
Maria Russo1, Stefania Moccia1, Carmela Spagnuolo1
1National Research Council, Institute of Food Sciences, 83100, Avellino, Italy.
Abstract:
In terms of public health, the 21st century has been characterized by coronavirus pandemics: in 2002-03 the virus SARS-CoV caused SARS; in 2012 MERS-CoV emerged and in 2019 a new human betacoronavirus strain, called SARS-CoV-2, caused the unprecedented COVID-19 outbreak. During the course of the current epidemic, medical challenges to save lives and scientific research aimed to reveal the genetic evolution and the biochemistry of the vital cycle of the new pathogen could lead to new preventive and therapeutic strategies against SARS-CoV-2. Up to now, there is no cure for COVID-19 and waiting for an efficacious vaccine, the development of "savage" protocols, based on "old" anti-inflammatory and anti-viral drugs represents a valid and alternative therapeutic approach. As an alternative or additional therapeutic/preventive option, different in silico and in vitro studies demonstrated that small natural molecules, belonging to polyphenol family, can interfere with various stages of coronavirus entry and replication cycle. Here, we reviewed the capacity of well-known (e.g. quercetin, baicalin, luteolin, hesperetin, gallocatechin gallate, epigallocatechin gallate) and uncommon (e.g. scutellarein, amentoflavone, papyriflavonol A) flavonoids, secondary metabolites widely present in plant tissues with antioxidant and anti-microbial functions, to inhibit key proteins involved in coronavirus infective cycle, such as PLpro, 3CLpro, NTPase/helicase. Due to their pleiotropic activities and lack of systemic toxicity, flavonoids and their derivative may represent target compounds to be tested in future clinical trials to enrich the drug arsenal against coronavirus infections.
Insights
Flavonoids, natural compounds from plants, show potential in inhibiting key proteins in the coronavirus (SARS-CoV-2) lifecycle. These molecules offer a promising alternative for developing new treatments against COVID-19.
Area of Science:
- Virology
- Biochemistry
- Pharmacology
Background:
- The 21st century has seen multiple coronavirus pandemics, including SARS, MERS, and the ongoing COVID-19 outbreak caused by SARS-CoV-2.
- Current therapeutic options for COVID-19 are limited, necessitating research into novel preventive and treatment strategies.
Purpose of the Study:
- To review the potential of flavonoids, a class of natural polyphenols, as antiviral agents against coronaviruses.
- To investigate the capacity of various flavonoids to inhibit critical proteins involved in the SARS-CoV-2 replication cycle.
Main Methods:
- In silico and in vitro studies were analyzed to assess the efficacy of flavonoids.
- The review focused on flavonoids' ability to inhibit key viral proteins such as PLpro, 3CLpro, and NTPase/helicase.
Main Results:
- Both common and uncommon flavonoids demonstrated the ability to interfere with coronavirus entry and replication.
- Flavonoids target essential proteins in the viral life cycle, suggesting broad-spectrum antiviral activity.
Conclusions:
- Flavonoids possess antioxidant and antimicrobial properties, making them attractive candidates for drug development.
- Due to their efficacy and low toxicity, flavonoids warrant further investigation in clinical trials for treating coronavirus infections.
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