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Antibacterial Activity of 7-Epiclusianone and Its Novel Copper Metal Complex on Streptococcus spp. Isolated from Bovine Mastitis and Their Cytotoxicity in MAC-T Cells

Mastitis is an inflammation of mammary gland parenchyma that adversely affects bovine health and dairy production worldwide despite significant efforts to eradicate it. The aim of this work was to characterize the antimicrobial activity of 7-epiclusianone (7-epi), a compound extracted from the Rheed...

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Autores principales: de Barros, Mariana, Perciano, Pedro Griffo, dos Santos, Marcelo Henrique, De Oliveira, Leandro Licursi, Costa, Éderson D’Martin, Moreira, Maria Aparecida Scatamburlo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6154111/
https://www.ncbi.nlm.nih.gov/pubmed/28513553
http://dx.doi.org/10.3390/molecules22050823
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author de Barros, Mariana
Perciano, Pedro Griffo
dos Santos, Marcelo Henrique
De Oliveira, Leandro Licursi
Costa, Éderson D’Martin
Moreira, Maria Aparecida Scatamburlo
author_facet de Barros, Mariana
Perciano, Pedro Griffo
dos Santos, Marcelo Henrique
De Oliveira, Leandro Licursi
Costa, Éderson D’Martin
Moreira, Maria Aparecida Scatamburlo
author_sort de Barros, Mariana
collection PubMed
description Mastitis is an inflammation of mammary gland parenchyma that adversely affects bovine health and dairy production worldwide despite significant efforts to eradicate it. The aim of this work was to characterize the antimicrobial activity of 7-epiclusianone (7-epi), a compound extracted from the Rheedia brasiliensis fruit, its complex with copper against Streptococcus spp. isolated from bovine mastitis, and to assess their cytotoxicity to bovine mammary alveolar cells (MAC-T). The complex 7-epiclusianone-Cu (7-epi-Cu) was an amorphous green solid with optical activity. Its vibrational spectrum in the infrared region showed absorption bands in the high-frequency region, as well as bands that can be attributed to the unconjugated and conjugated stretching of the free ligand. The complex was anhydrous. One of the tested bacterial strains was not sensitive to the compounds, while the other three had MIC values of 7.8 µg mL(−1) and minimum bactericidal concentration (MBC) values between 15.6 and 31.3 µg mL(−1). These two compounds are bacteriostatic, did not cause damage to the cell wall and, at sub-inhibitory concentrations, did not induce bacterial adhesion. The compounds were not cytotoxic. Based on these results, 7-epi and 7-epi-Cu exhibited desirable antimicrobial properties and could potentially be used in bovine mastitis treatment.
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spelling pubmed-61541112018-11-13 Antibacterial Activity of 7-Epiclusianone and Its Novel Copper Metal Complex on Streptococcus spp. Isolated from Bovine Mastitis and Their Cytotoxicity in MAC-T Cells de Barros, Mariana Perciano, Pedro Griffo dos Santos, Marcelo Henrique De Oliveira, Leandro Licursi Costa, Éderson D’Martin Moreira, Maria Aparecida Scatamburlo Molecules Article Mastitis is an inflammation of mammary gland parenchyma that adversely affects bovine health and dairy production worldwide despite significant efforts to eradicate it. The aim of this work was to characterize the antimicrobial activity of 7-epiclusianone (7-epi), a compound extracted from the Rheedia brasiliensis fruit, its complex with copper against Streptococcus spp. isolated from bovine mastitis, and to assess their cytotoxicity to bovine mammary alveolar cells (MAC-T). The complex 7-epiclusianone-Cu (7-epi-Cu) was an amorphous green solid with optical activity. Its vibrational spectrum in the infrared region showed absorption bands in the high-frequency region, as well as bands that can be attributed to the unconjugated and conjugated stretching of the free ligand. The complex was anhydrous. One of the tested bacterial strains was not sensitive to the compounds, while the other three had MIC values of 7.8 µg mL(−1) and minimum bactericidal concentration (MBC) values between 15.6 and 31.3 µg mL(−1). These two compounds are bacteriostatic, did not cause damage to the cell wall and, at sub-inhibitory concentrations, did not induce bacterial adhesion. The compounds were not cytotoxic. Based on these results, 7-epi and 7-epi-Cu exhibited desirable antimicrobial properties and could potentially be used in bovine mastitis treatment. MDPI 2017-05-17 /pmc/articles/PMC6154111/ /pubmed/28513553 http://dx.doi.org/10.3390/molecules22050823 Text en © 2017 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
de Barros, Mariana
Perciano, Pedro Griffo
dos Santos, Marcelo Henrique
De Oliveira, Leandro Licursi
Costa, Éderson D’Martin
Moreira, Maria Aparecida Scatamburlo
Antibacterial Activity of 7-Epiclusianone and Its Novel Copper Metal Complex on Streptococcus spp. Isolated from Bovine Mastitis and Their Cytotoxicity in MAC-T Cells
title Antibacterial Activity of 7-Epiclusianone and Its Novel Copper Metal Complex on Streptococcus spp. Isolated from Bovine Mastitis and Their Cytotoxicity in MAC-T Cells
title_full Antibacterial Activity of 7-Epiclusianone and Its Novel Copper Metal Complex on Streptococcus spp. Isolated from Bovine Mastitis and Their Cytotoxicity in MAC-T Cells
title_fullStr Antibacterial Activity of 7-Epiclusianone and Its Novel Copper Metal Complex on Streptococcus spp. Isolated from Bovine Mastitis and Their Cytotoxicity in MAC-T Cells
title_full_unstemmed Antibacterial Activity of 7-Epiclusianone and Its Novel Copper Metal Complex on Streptococcus spp. Isolated from Bovine Mastitis and Their Cytotoxicity in MAC-T Cells
title_short Antibacterial Activity of 7-Epiclusianone and Its Novel Copper Metal Complex on Streptococcus spp. Isolated from Bovine Mastitis and Their Cytotoxicity in MAC-T Cells
title_sort antibacterial activity of 7-epiclusianone and its novel copper metal complex on streptococcus spp. isolated from bovine mastitis and their cytotoxicity in mac-t cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6154111/
https://www.ncbi.nlm.nih.gov/pubmed/28513553
http://dx.doi.org/10.3390/molecules22050823
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