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Repurposing of the Nootropic Drug Vinpocetine as an Analgesic and Anti-Inflammatory Agent: Evidence in a Mouse Model of Superoxide Anion-Triggered Inflammation

Clinically active drugs for the treatment of acute pain have their prescription limited due to the significant side effects they induce. An increase in reactive oxygen species (ROS) has been linked to several conditions, including inflammation and pain processing. Therefore, new or repurposed drugs...

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Autores principales: Lourenco-Gonzalez, Yuri, Fattori, Victor, Domiciano, Talita P., Rossaneis, Ana C., Borghi, Sergio M., Zaninelli, Tiago H., Bernardy, Catia C. F., Alves-Filho, Jose C., Cunha, Thiago M., Cunha, Fernando Q., Casagrande, Rubia, Verri, Waldiceu A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6462340/
https://www.ncbi.nlm.nih.gov/pubmed/31049025
http://dx.doi.org/10.1155/2019/6481812
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author Lourenco-Gonzalez, Yuri
Fattori, Victor
Domiciano, Talita P.
Rossaneis, Ana C.
Borghi, Sergio M.
Zaninelli, Tiago H.
Bernardy, Catia C. F.
Alves-Filho, Jose C.
Cunha, Thiago M.
Cunha, Fernando Q.
Casagrande, Rubia
Verri, Waldiceu A.
author_facet Lourenco-Gonzalez, Yuri
Fattori, Victor
Domiciano, Talita P.
Rossaneis, Ana C.
Borghi, Sergio M.
Zaninelli, Tiago H.
Bernardy, Catia C. F.
Alves-Filho, Jose C.
Cunha, Thiago M.
Cunha, Fernando Q.
Casagrande, Rubia
Verri, Waldiceu A.
author_sort Lourenco-Gonzalez, Yuri
collection PubMed
description Clinically active drugs for the treatment of acute pain have their prescription limited due to the significant side effects they induce. An increase in reactive oxygen species (ROS) has been linked to several conditions, including inflammation and pain processing. Therefore, new or repurposed drugs with the ability of reducing ROS-triggered responses are promising candidates for analgesic drugs. Vinpocetine is a clinically used nootropic drug with antioxidant, anti-inflammatory, and analgesic properties. However, the effects of vinpocetine have not been investigated in a model with a direct relationship between ROS, inflammation, and pain. Based on that, we aimed to investigate the effects of vinpocetine in a model of superoxide anion-induced pain and inflammation using potassium superoxide (KO(2)) as a superoxide anion donor to trigger inflammation and pain. In the KO(2) model, vinpocetine dose-dependently reduced pain-like behaviors (spontaneous pain and hyperalgesia), paw edema, and neutrophil and mononuclear cell recruitment to the paw skin (assessed by H&E staining, fluorescence, and enzymatic assays) and to the peritoneal cavity. Vinpocetine also restored tissue endogenous antioxidant ability and Nrf2 and Ho-1 mRNA expression and reduced superoxide anion production and gp91(phox) mRNA expression. We also observed the inhibition of IκBα degradation by vinpocetine, which demonstrates a reduction in the activation of NF-κB explaining the diminished production of IL-33, IL-1β, and TNF-α. Collectively, our data show that vinpocetine alleviates pain and inflammation induced by KO(2), which is a mouse model with a direct role of ROS in triggering pain and other inflammatory phenomena. Thus, the results suggest the repurposing of vinpocetine as an anti-inflammatory and analgesic drug.
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spelling pubmed-64623402019-05-02 Repurposing of the Nootropic Drug Vinpocetine as an Analgesic and Anti-Inflammatory Agent: Evidence in a Mouse Model of Superoxide Anion-Triggered Inflammation Lourenco-Gonzalez, Yuri Fattori, Victor Domiciano, Talita P. Rossaneis, Ana C. Borghi, Sergio M. Zaninelli, Tiago H. Bernardy, Catia C. F. Alves-Filho, Jose C. Cunha, Thiago M. Cunha, Fernando Q. Casagrande, Rubia Verri, Waldiceu A. Mediators Inflamm Research Article Clinically active drugs for the treatment of acute pain have their prescription limited due to the significant side effects they induce. An increase in reactive oxygen species (ROS) has been linked to several conditions, including inflammation and pain processing. Therefore, new or repurposed drugs with the ability of reducing ROS-triggered responses are promising candidates for analgesic drugs. Vinpocetine is a clinically used nootropic drug with antioxidant, anti-inflammatory, and analgesic properties. However, the effects of vinpocetine have not been investigated in a model with a direct relationship between ROS, inflammation, and pain. Based on that, we aimed to investigate the effects of vinpocetine in a model of superoxide anion-induced pain and inflammation using potassium superoxide (KO(2)) as a superoxide anion donor to trigger inflammation and pain. In the KO(2) model, vinpocetine dose-dependently reduced pain-like behaviors (spontaneous pain and hyperalgesia), paw edema, and neutrophil and mononuclear cell recruitment to the paw skin (assessed by H&E staining, fluorescence, and enzymatic assays) and to the peritoneal cavity. Vinpocetine also restored tissue endogenous antioxidant ability and Nrf2 and Ho-1 mRNA expression and reduced superoxide anion production and gp91(phox) mRNA expression. We also observed the inhibition of IκBα degradation by vinpocetine, which demonstrates a reduction in the activation of NF-κB explaining the diminished production of IL-33, IL-1β, and TNF-α. Collectively, our data show that vinpocetine alleviates pain and inflammation induced by KO(2), which is a mouse model with a direct role of ROS in triggering pain and other inflammatory phenomena. Thus, the results suggest the repurposing of vinpocetine as an anti-inflammatory and analgesic drug. Hindawi 2019-03-31 /pmc/articles/PMC6462340/ /pubmed/31049025 http://dx.doi.org/10.1155/2019/6481812 Text en Copyright © 2019 Yuri Lourenco-Gonzalez et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lourenco-Gonzalez, Yuri
Fattori, Victor
Domiciano, Talita P.
Rossaneis, Ana C.
Borghi, Sergio M.
Zaninelli, Tiago H.
Bernardy, Catia C. F.
Alves-Filho, Jose C.
Cunha, Thiago M.
Cunha, Fernando Q.
Casagrande, Rubia
Verri, Waldiceu A.
Repurposing of the Nootropic Drug Vinpocetine as an Analgesic and Anti-Inflammatory Agent: Evidence in a Mouse Model of Superoxide Anion-Triggered Inflammation
title Repurposing of the Nootropic Drug Vinpocetine as an Analgesic and Anti-Inflammatory Agent: Evidence in a Mouse Model of Superoxide Anion-Triggered Inflammation
title_full Repurposing of the Nootropic Drug Vinpocetine as an Analgesic and Anti-Inflammatory Agent: Evidence in a Mouse Model of Superoxide Anion-Triggered Inflammation
title_fullStr Repurposing of the Nootropic Drug Vinpocetine as an Analgesic and Anti-Inflammatory Agent: Evidence in a Mouse Model of Superoxide Anion-Triggered Inflammation
title_full_unstemmed Repurposing of the Nootropic Drug Vinpocetine as an Analgesic and Anti-Inflammatory Agent: Evidence in a Mouse Model of Superoxide Anion-Triggered Inflammation
title_short Repurposing of the Nootropic Drug Vinpocetine as an Analgesic and Anti-Inflammatory Agent: Evidence in a Mouse Model of Superoxide Anion-Triggered Inflammation
title_sort repurposing of the nootropic drug vinpocetine as an analgesic and anti-inflammatory agent: evidence in a mouse model of superoxide anion-triggered inflammation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6462340/
https://www.ncbi.nlm.nih.gov/pubmed/31049025
http://dx.doi.org/10.1155/2019/6481812
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