COronaVIrus Disease 2019 (COVID-19) is a newly emerging infectious disease that spread across the world, caused by the novel coronavirus Severe Acute Respiratory Syndrome CoronaVirus 2 (SARS-CoV-2). Despite the advancements in science that led to the creation of the vaccine, there is still an urgent need for new antiviral drugs effective against SARS-CoV-2. This study aimed to investigate the antiviral effect of Paulownia tomentosa Steud extract against SARS-CoV-2 and to evaluate its antioxidant properties, including respiratory smooth muscle relaxant effects. Our results showed that P. tomentosa extract can inhibit viral replication by directly interacting with both the 3-chymotrypsin-like protease and spike protein. In addition, the phyto complex does not reduce lung epithelial cell viability and exerts a protective action in those cells damaged by tert-butyl hydroperoxide , a toxic agent able to alter cells’ functions via increased oxidative stress. These data suggest the potential role of P. tomentosa extract in COVID-19 treatment, since this extract is able to act both as an antiviral and a cytoprotective agent in vitro.

A potential host and virus targeting tool against COVID-19. Chemical characterization, antiviral, cytoprotective, antioxidant, respiratory smooth muscle relaxant effects of Paulownia tomentosa Steud / Magurano, Fabio; Micucci, Matteo; Nuzzo, Domenico; Baggieri, Melissa; Picone, Pasquale; Gioacchini, Silvia; Fioravanti, Raoul; Bucci, Paola; Kojouri, Maedeh; Mari, Michele; Michele, Retini; Budriesi, Roberta; Mattioli, Laura Beatrice; Corazza, Ivan; Di Liberto, Valentina; Todaro, Luigi; Giuseppetti, Roberto; D’Ugo, Emilio; Marchi, Antonella; Mecca, Marisabel; D’Auria, Maurizio. - In: BIOMÉDECINE & PHARMACOTHÉRAPIE. - ISSN 0753-3322. - 158:(2023), pp. 1-11. [10.1016/j.biopha.2022.114083]

A potential host and virus targeting tool against COVID-19. Chemical characterization, antiviral, cytoprotective, antioxidant, respiratory smooth muscle relaxant effects of Paulownia tomentosa Steud

Gioacchini, Silvia;Fioravanti, Raoul;Kojouri, Maedeh;
2023

Abstract

COronaVIrus Disease 2019 (COVID-19) is a newly emerging infectious disease that spread across the world, caused by the novel coronavirus Severe Acute Respiratory Syndrome CoronaVirus 2 (SARS-CoV-2). Despite the advancements in science that led to the creation of the vaccine, there is still an urgent need for new antiviral drugs effective against SARS-CoV-2. This study aimed to investigate the antiviral effect of Paulownia tomentosa Steud extract against SARS-CoV-2 and to evaluate its antioxidant properties, including respiratory smooth muscle relaxant effects. Our results showed that P. tomentosa extract can inhibit viral replication by directly interacting with both the 3-chymotrypsin-like protease and spike protein. In addition, the phyto complex does not reduce lung epithelial cell viability and exerts a protective action in those cells damaged by tert-butyl hydroperoxide , a toxic agent able to alter cells’ functions via increased oxidative stress. These data suggest the potential role of P. tomentosa extract in COVID-19 treatment, since this extract is able to act both as an antiviral and a cytoprotective agent in vitro.
2023
covid-19; paulownia tomentosa steud extract; antiviral; antioxydant; phytocomplex; sars-cov-2
01 Pubblicazione su rivista::01a Articolo in rivista
A potential host and virus targeting tool against COVID-19. Chemical characterization, antiviral, cytoprotective, antioxidant, respiratory smooth muscle relaxant effects of Paulownia tomentosa Steud / Magurano, Fabio; Micucci, Matteo; Nuzzo, Domenico; Baggieri, Melissa; Picone, Pasquale; Gioacchini, Silvia; Fioravanti, Raoul; Bucci, Paola; Kojouri, Maedeh; Mari, Michele; Michele, Retini; Budriesi, Roberta; Mattioli, Laura Beatrice; Corazza, Ivan; Di Liberto, Valentina; Todaro, Luigi; Giuseppetti, Roberto; D’Ugo, Emilio; Marchi, Antonella; Mecca, Marisabel; D’Auria, Maurizio. - In: BIOMÉDECINE & PHARMACOTHÉRAPIE. - ISSN 0753-3322. - 158:(2023), pp. 1-11. [10.1016/j.biopha.2022.114083]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1672822
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