Silymarin exerts antioxidant and antiviral effects on Zika virus infection

The Zika virus (ZIKV) – Orthoflavivirus zikaense – epidemic and its association with severe neurological disorders have created an urgent need to understand the disease pathogenesis and identify potential therapeutic targets. In previous investigations, we have shown that oxidative stress is associa...

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Published inJournal of virological methods Vol. 335; p. 115133
Main Authors Lima, Rafaela Lameira Souza, Menegatto, Marília Bueno da Silva, Almeida, Letícia Trindade, Magalhães, José Carlos de, Ferraz, Ariane Coelho, Magalhães, Cintia Lopes de Brito
Format Journal Article
LanguageEnglish
Published Netherlands Elsevier B.V 01.06.2025
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ISSN0166-0934
1879-0984
1879-0984
DOI10.1016/j.jviromet.2025.115133

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Abstract The Zika virus (ZIKV) – Orthoflavivirus zikaense – epidemic and its association with severe neurological disorders have created an urgent need to understand the disease pathogenesis and identify potential therapeutic targets. In previous investigations, we have shown that oxidative stress is associated with the pathogenesis of ZIKV infection in vitro and in vivo, and that silymarin has anti-ZIKV action in vitro. Here, we characterised the antioxidant and antiviral effects of silymarin against ZIKV infection in an animal model. We observed an increase in the levels of biomarkers of oxidative damage and in antioxidant enzyme activities in the livers of ZIKV-infected C57BL/6 mice. However, these effects were reversed in ZIKV-infected animals that were treated with silymarin. Furthermore, silymarin reduced the viral load in the livers of animals. Next, by in vitro studies, we confirmed that the anti-ZIKV action of silymarin is independent of its antioxidant activity. This work reinforces the potential use of silymarin against Zika fever. [Display omitted] •Zika virus (ZIKV) infection leads to oxidative stress in C57BL/6 mice.•Silymarin was able to restore redox parameters resulting from ZIKV infection in animals.•Silymarin also showed anti-ZIKV activity in the livers of animals.•The anti-ZIKV action of silymarin is independent of its antioxidant activity.
AbstractList The Zika virus (ZIKV) - Orthoflavivirus zikaense - epidemic and its association with severe neurological disorders have created an urgent need to understand the disease pathogenesis and identify potential therapeutic targets. In previous investigations, we have shown that oxidative stress is associated with the pathogenesis of ZIKV infection in vitro and in vivo, and that silymarin has anti-ZIKV action in vitro. Here, we characterised the antioxidant and antiviral effects of silymarin against ZIKV infection in an animal model. We observed an increase in the levels of biomarkers of oxidative damage and in antioxidant enzyme activities in the livers of ZIKV-infected C57BL/6 mice. However, these effects were reversed in ZIKV-infected animals that were treated with silymarin. Furthermore, silymarin reduced the viral load in the livers of animals. Next, by in vitro studies, we confirmed that the anti-ZIKV action of silymarin is independent of its antioxidant activity. This work reinforces the potential use of silymarin against Zika fever.
The Zika virus (ZIKV) – Orthoflavivirus zikaense – epidemic and its association with severe neurological disorders have created an urgent need to understand the disease pathogenesis and identify potential therapeutic targets. In previous investigations, we have shown that oxidative stress is associated with the pathogenesis of ZIKV infection in vitro and in vivo, and that silymarin has anti-ZIKV action in vitro. Here, we characterised the antioxidant and antiviral effects of silymarin against ZIKV infection in an animal model. We observed an increase in the levels of biomarkers of oxidative damage and in antioxidant enzyme activities in the livers of ZIKV-infected C57BL/6 mice. However, these effects were reversed in ZIKV-infected animals that were treated with silymarin. Furthermore, silymarin reduced the viral load in the livers of animals. Next, by in vitro studies, we confirmed that the anti-ZIKV action of silymarin is independent of its antioxidant activity. This work reinforces the potential use of silymarin against Zika fever. [Display omitted] •Zika virus (ZIKV) infection leads to oxidative stress in C57BL/6 mice.•Silymarin was able to restore redox parameters resulting from ZIKV infection in animals.•Silymarin also showed anti-ZIKV activity in the livers of animals.•The anti-ZIKV action of silymarin is independent of its antioxidant activity.
The Zika virus (ZIKV) - Orthoflavivirus zikaense - epidemic and its association with severe neurological disorders have created an urgent need to understand the disease pathogenesis and identify potential therapeutic targets. In previous investigations, we have shown that oxidative stress is associated with the pathogenesis of ZIKV infection in vitro and in vivo, and that silymarin has anti-ZIKV action in vitro. Here, we characterised the antioxidant and antiviral effects of silymarin against ZIKV infection in an animal model. We observed an increase in the levels of biomarkers of oxidative damage and in antioxidant enzyme activities in the livers of ZIKV-infected C57BL/6 mice. However, these effects were reversed in ZIKV-infected animals that were treated with silymarin. Furthermore, silymarin reduced the viral load in the livers of animals. Next, by in vitro studies, we confirmed that the anti-ZIKV action of silymarin is independent of its antioxidant activity. This work reinforces the potential use of silymarin against Zika fever.The Zika virus (ZIKV) - Orthoflavivirus zikaense - epidemic and its association with severe neurological disorders have created an urgent need to understand the disease pathogenesis and identify potential therapeutic targets. In previous investigations, we have shown that oxidative stress is associated with the pathogenesis of ZIKV infection in vitro and in vivo, and that silymarin has anti-ZIKV action in vitro. Here, we characterised the antioxidant and antiviral effects of silymarin against ZIKV infection in an animal model. We observed an increase in the levels of biomarkers of oxidative damage and in antioxidant enzyme activities in the livers of ZIKV-infected C57BL/6 mice. However, these effects were reversed in ZIKV-infected animals that were treated with silymarin. Furthermore, silymarin reduced the viral load in the livers of animals. Next, by in vitro studies, we confirmed that the anti-ZIKV action of silymarin is independent of its antioxidant activity. This work reinforces the potential use of silymarin against Zika fever.
ArticleNumber 115133
Author Menegatto, Marília Bueno da Silva
Magalhães, Cintia Lopes de Brito
Almeida, Letícia Trindade
Magalhães, José Carlos de
Ferraz, Ariane Coelho
Lima, Rafaela Lameira Souza
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  givenname: Letícia Trindade
  surname: Almeida
  fullname: Almeida, Letícia Trindade
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  givenname: Ariane Coelho
  surname: Ferraz
  fullname: Ferraz, Ariane Coelho
  email: arianecferraz@gmail.com
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Keywords Antiviral
Zika virus
Silymarin
Antioxidant
Language English
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Snippet The Zika virus (ZIKV) – Orthoflavivirus zikaense – epidemic and its association with severe neurological disorders have created an urgent need to understand...
The Zika virus (ZIKV) - Orthoflavivirus zikaense - epidemic and its association with severe neurological disorders have created an urgent need to understand...
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crossref
elsevier
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StartPage 115133
SubjectTerms Animals
Antioxidant
Antioxidants - pharmacology
Antiviral
Antiviral Agents - pharmacology
Disease Models, Animal
Liver - drug effects
Liver - virology
Mice
Mice, Inbred C57BL
Oxidative Stress - drug effects
Silymarin
Silymarin - pharmacology
Viral Load - drug effects
Zika virus
Zika Virus - drug effects
Zika Virus Infection - drug therapy
Zika Virus Infection - virology
Title Silymarin exerts antioxidant and antiviral effects on Zika virus infection
URI https://dx.doi.org/10.1016/j.jviromet.2025.115133
https://www.ncbi.nlm.nih.gov/pubmed/40043812
https://www.proquest.com/docview/3174457889
Volume 335
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