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Synthesis of copaiba (Copaifera officinalis) oil nanoemulsion and the potential against Zika virus: An in vitro study

Zika virus (ZIKV) has spread all over the world since its major outbreak in 2015. This infection has been recognized as a major global health issue due to the neurological complications related to ZIKV infection, such as Guillain–Barré Syndrome and Zika virus Congenital Syndrome. Currently, there ar...

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Autores principales: Carvalho, Tamara, Landim, Marcela Guimarães, Lima, Maria Letícia Duarte, Bittar, Cíntia, Faria, Beatriz Carvalho de Araújo Oliveira, Rahal, Paula, de Lima, Milena Campelo Freitas, Junior, Valdir Florêncio da Veiga, Joanitti, Graziella Anselmo, Calmon, Marilia Freitas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10484457/
https://www.ncbi.nlm.nih.gov/pubmed/37676868
http://dx.doi.org/10.1371/journal.pone.0283817
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author Carvalho, Tamara
Landim, Marcela Guimarães
Lima, Maria Letícia Duarte
Bittar, Cíntia
Faria, Beatriz Carvalho de Araújo Oliveira
Rahal, Paula
de Lima, Milena Campelo Freitas
Junior, Valdir Florêncio da Veiga
Joanitti, Graziella Anselmo
Calmon, Marilia Freitas
author_facet Carvalho, Tamara
Landim, Marcela Guimarães
Lima, Maria Letícia Duarte
Bittar, Cíntia
Faria, Beatriz Carvalho de Araújo Oliveira
Rahal, Paula
de Lima, Milena Campelo Freitas
Junior, Valdir Florêncio da Veiga
Joanitti, Graziella Anselmo
Calmon, Marilia Freitas
author_sort Carvalho, Tamara
collection PubMed
description Zika virus (ZIKV) has spread all over the world since its major outbreak in 2015. This infection has been recognized as a major global health issue due to the neurological complications related to ZIKV infection, such as Guillain–Barré Syndrome and Zika virus Congenital Syndrome. Currently, there are no vaccines or specific treatments for ZIKV infection, which makes the development of specific therapies for its treatment very important. Several studies have been developed to analyze the potential of compounds against ZIKV, with the aim of finding new promising treatments. Herein, we evaluate the ability of a copaiba (Copaifera officinalis) oil nanoemulsion (CNE) to inhibit ZIKV. First, the highest non-cytotoxic concentration of 180 μg/mL was chosen since this concentration maintains 80% cell viability up to 96h after treatment with CNE in VERO cells resulted from MTT assay. The intracellular uptake assay was performed, and confirmed the internalization of the nanoemulsion in cells at all times analyzed. VERO cells were infected with ZIKV and simultaneously treated with CNE and the nanoformulation without oil (ENE) at the highest non-toxic concentration. The results evaluated by plaque assay revealed a viral inhibition of 80% for CNE and 70% for ENE. A dose-dependence assay revealed that the CNE treatment demonstrated a dose-dependent response in the viral RNA levels, whereas all ENE tested concentrations exhibited a similar degree of reduction. Taken together, our results suggest CNE as a promising nano-sized platform to be further studied for antiviral treatments.
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spelling pubmed-104844572023-09-08 Synthesis of copaiba (Copaifera officinalis) oil nanoemulsion and the potential against Zika virus: An in vitro study Carvalho, Tamara Landim, Marcela Guimarães Lima, Maria Letícia Duarte Bittar, Cíntia Faria, Beatriz Carvalho de Araújo Oliveira Rahal, Paula de Lima, Milena Campelo Freitas Junior, Valdir Florêncio da Veiga Joanitti, Graziella Anselmo Calmon, Marilia Freitas PLoS One Research Article Zika virus (ZIKV) has spread all over the world since its major outbreak in 2015. This infection has been recognized as a major global health issue due to the neurological complications related to ZIKV infection, such as Guillain–Barré Syndrome and Zika virus Congenital Syndrome. Currently, there are no vaccines or specific treatments for ZIKV infection, which makes the development of specific therapies for its treatment very important. Several studies have been developed to analyze the potential of compounds against ZIKV, with the aim of finding new promising treatments. Herein, we evaluate the ability of a copaiba (Copaifera officinalis) oil nanoemulsion (CNE) to inhibit ZIKV. First, the highest non-cytotoxic concentration of 180 μg/mL was chosen since this concentration maintains 80% cell viability up to 96h after treatment with CNE in VERO cells resulted from MTT assay. The intracellular uptake assay was performed, and confirmed the internalization of the nanoemulsion in cells at all times analyzed. VERO cells were infected with ZIKV and simultaneously treated with CNE and the nanoformulation without oil (ENE) at the highest non-toxic concentration. The results evaluated by plaque assay revealed a viral inhibition of 80% for CNE and 70% for ENE. A dose-dependence assay revealed that the CNE treatment demonstrated a dose-dependent response in the viral RNA levels, whereas all ENE tested concentrations exhibited a similar degree of reduction. Taken together, our results suggest CNE as a promising nano-sized platform to be further studied for antiviral treatments. Public Library of Science 2023-09-07 /pmc/articles/PMC10484457/ /pubmed/37676868 http://dx.doi.org/10.1371/journal.pone.0283817 Text en © 2023 Carvalho et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Carvalho, Tamara
Landim, Marcela Guimarães
Lima, Maria Letícia Duarte
Bittar, Cíntia
Faria, Beatriz Carvalho de Araújo Oliveira
Rahal, Paula
de Lima, Milena Campelo Freitas
Junior, Valdir Florêncio da Veiga
Joanitti, Graziella Anselmo
Calmon, Marilia Freitas
Synthesis of copaiba (Copaifera officinalis) oil nanoemulsion and the potential against Zika virus: An in vitro study
title Synthesis of copaiba (Copaifera officinalis) oil nanoemulsion and the potential against Zika virus: An in vitro study
title_full Synthesis of copaiba (Copaifera officinalis) oil nanoemulsion and the potential against Zika virus: An in vitro study
title_fullStr Synthesis of copaiba (Copaifera officinalis) oil nanoemulsion and the potential against Zika virus: An in vitro study
title_full_unstemmed Synthesis of copaiba (Copaifera officinalis) oil nanoemulsion and the potential against Zika virus: An in vitro study
title_short Synthesis of copaiba (Copaifera officinalis) oil nanoemulsion and the potential against Zika virus: An in vitro study
title_sort synthesis of copaiba (copaifera officinalis) oil nanoemulsion and the potential against zika virus: an in vitro study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10484457/
https://www.ncbi.nlm.nih.gov/pubmed/37676868
http://dx.doi.org/10.1371/journal.pone.0283817
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