Preventive Effect of a Polyphenol-Rich Extract from <i>Geranium sanguineum</i> L. on Hepatic Drug Metabolism in Influenza Infected Mice
The decreased hepatic drug metabolism (predominately first phase) is one of the essential reasons for numerous side effects and for increased drug toxicity during influenza virus infection (IVI). The present study aims to investigate some mechanisms of the preventive effect of a standardized polyphe...
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Österreichische Apotheker-Verlagsgesellschaft m. b. H.
2020-10-01
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doaj-8ff5ebb7d0de42578e4e332994a8c76a2020-11-25T03:28:54ZengÖsterreichische Apotheker-Verlagsgesellschaft m. b. H.Scientia Pharmaceutica0036-87092218-05322020-10-0188454510.3390/scipharm88040045Preventive Effect of a Polyphenol-Rich Extract from <i>Geranium sanguineum</i> L. on Hepatic Drug Metabolism in Influenza Infected MiceSilviya Abarova0Lyubka Tancheva1Rumen Nikolov2Julia Serkedjieva3Elitsa Pavlova4Alessia Bramanti5Ferdinando Nicoletti6Nikolay T. Tzvetkov7Faculty of Medicine, Medical University of Sofia, 1431 Sofia, BulgariaInstitute of Neurobiology, Bulgarian Academy of Sciences, 1113 Sofia, BulgariaFaculty of Medicine, Medical University of Sofia, 1431 Sofia, BulgariaStephan Angeloff Institute of Microbiology, Bulgarian Academy of Sciences, 1113 Sofia, BulgariaFaculty of Physics, Sofia University “St. Kliment Ohridski”, 1164 Sofia, BulgariaInstituto di Ricovero e Cura a Carattere Scientifico (IRCCS), Bonino-Pulejo, 98123 Messina, ItalyDepartment of Biomedicine and Biotechnology, University of Catania, 95124 Catania CT, ItalyInstitute of Molecular Biology “Roumen Tsanev”, Bulgarian Academy of Sciences, 1113 Sofia, BulgariaThe decreased hepatic drug metabolism (predominately first phase) is one of the essential reasons for numerous side effects and for increased drug toxicity during influenza virus infection (IVI). The present study aims to investigate some mechanisms of the preventive effect of a standardized polyphenol complex from the medicinal plant <i>Geranium sanguineum</i> L. (PPhC) (10 mg/kg nasally). A verified experimental model of IVI A/Aichi/2/68 (H3N2) (4.5 lg LD50) in male ICR (Institute of Cancer Research, USA) mice was used. Changes in hepatic monooxygenase activities as well as nicotinamide adenine dinucleotide phosphate (NADPH)-cytochrome C reductase activity and cytochtome P450 content were studied on days 2, 6, 9, 21 of the infection together with thiobarbituric acid reactive substances in the liver supernatant. Our data clearly demonstrates that IVI affects all components of the electronic chain of cytochrome P-450. N-demethylases and hydroxylases as well as the activity of cytochrome C reductase and cytochtome P-450 content were decreased in the course of the virus infection. This implies that free radicals play an important role not only in the pathogenesis of IVI, but also in the modulation of the hepatic monooxygenase activity. This is also consistent with the established polyphenol complex PPhC from the medicinal plant <i>Geranium sanguineum</i> L. preventive effect against increased thiobarbituric acid reactive substances (TBARS)-levels. PPhC restored most of the monooxygenase activities that were inhibited in IVI animals, even over the control levels, probably via multiple mechanisms that may entail antioxidant activity and selective antiviral and protein-binding effects. In contrast to infected animals, in healthy mice, PPhC showed moderate reversible inhibitory effect on hepatic monooxygenase activities.https://www.mdpi.com/2218-0532/88/4/45cytochrome P450 monooxygenasesantioxidantspolyphenols<i>Geranium sanguineum</i> L.influenza virus infection |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Silviya Abarova Lyubka Tancheva Rumen Nikolov Julia Serkedjieva Elitsa Pavlova Alessia Bramanti Ferdinando Nicoletti Nikolay T. Tzvetkov |
spellingShingle |
Silviya Abarova Lyubka Tancheva Rumen Nikolov Julia Serkedjieva Elitsa Pavlova Alessia Bramanti Ferdinando Nicoletti Nikolay T. Tzvetkov Preventive Effect of a Polyphenol-Rich Extract from <i>Geranium sanguineum</i> L. on Hepatic Drug Metabolism in Influenza Infected Mice Scientia Pharmaceutica cytochrome P450 monooxygenases antioxidants polyphenols <i>Geranium sanguineum</i> L. influenza virus infection |
author_facet |
Silviya Abarova Lyubka Tancheva Rumen Nikolov Julia Serkedjieva Elitsa Pavlova Alessia Bramanti Ferdinando Nicoletti Nikolay T. Tzvetkov |
author_sort |
Silviya Abarova |
title |
Preventive Effect of a Polyphenol-Rich Extract from <i>Geranium sanguineum</i> L. on Hepatic Drug Metabolism in Influenza Infected Mice |
title_short |
Preventive Effect of a Polyphenol-Rich Extract from <i>Geranium sanguineum</i> L. on Hepatic Drug Metabolism in Influenza Infected Mice |
title_full |
Preventive Effect of a Polyphenol-Rich Extract from <i>Geranium sanguineum</i> L. on Hepatic Drug Metabolism in Influenza Infected Mice |
title_fullStr |
Preventive Effect of a Polyphenol-Rich Extract from <i>Geranium sanguineum</i> L. on Hepatic Drug Metabolism in Influenza Infected Mice |
title_full_unstemmed |
Preventive Effect of a Polyphenol-Rich Extract from <i>Geranium sanguineum</i> L. on Hepatic Drug Metabolism in Influenza Infected Mice |
title_sort |
preventive effect of a polyphenol-rich extract from <i>geranium sanguineum</i> l. on hepatic drug metabolism in influenza infected mice |
publisher |
Österreichische Apotheker-Verlagsgesellschaft m. b. H. |
series |
Scientia Pharmaceutica |
issn |
0036-8709 2218-0532 |
publishDate |
2020-10-01 |
description |
The decreased hepatic drug metabolism (predominately first phase) is one of the essential reasons for numerous side effects and for increased drug toxicity during influenza virus infection (IVI). The present study aims to investigate some mechanisms of the preventive effect of a standardized polyphenol complex from the medicinal plant <i>Geranium sanguineum</i> L. (PPhC) (10 mg/kg nasally). A verified experimental model of IVI A/Aichi/2/68 (H3N2) (4.5 lg LD50) in male ICR (Institute of Cancer Research, USA) mice was used. Changes in hepatic monooxygenase activities as well as nicotinamide adenine dinucleotide phosphate (NADPH)-cytochrome C reductase activity and cytochtome P450 content were studied on days 2, 6, 9, 21 of the infection together with thiobarbituric acid reactive substances in the liver supernatant. Our data clearly demonstrates that IVI affects all components of the electronic chain of cytochrome P-450. N-demethylases and hydroxylases as well as the activity of cytochrome C reductase and cytochtome P-450 content were decreased in the course of the virus infection. This implies that free radicals play an important role not only in the pathogenesis of IVI, but also in the modulation of the hepatic monooxygenase activity. This is also consistent with the established polyphenol complex PPhC from the medicinal plant <i>Geranium sanguineum</i> L. preventive effect against increased thiobarbituric acid reactive substances (TBARS)-levels. PPhC restored most of the monooxygenase activities that were inhibited in IVI animals, even over the control levels, probably via multiple mechanisms that may entail antioxidant activity and selective antiviral and protein-binding effects. In contrast to infected animals, in healthy mice, PPhC showed moderate reversible inhibitory effect on hepatic monooxygenase activities. |
topic |
cytochrome P450 monooxygenases antioxidants polyphenols <i>Geranium sanguineum</i> L. influenza virus infection |
url |
https://www.mdpi.com/2218-0532/88/4/45 |
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