Biological properties of Schinus terebinthifolia Raddi essential oil
Abstract Schinus terebinthifolia Raddi green fruits essential oil (EO) was evaluated regarding its phytochemical profile, antimicrobial and cytotoxic activities, and toxicity. Gas chromatography with mass spectrometry was applied to identify its constituents, thereafter the minimum inhibitory concentration, minimum bactericidal and fungicidal concentrations, and its antibiofilm activity were evaluated. The EO cytotoxicity was assessed in tumor and non-tumor human cells, and in vivo toxicity was evaluated in a Galleria mellonella model. The major constituents of S. terebinthifolia EO were alpha-phellandrene and beta-phellandrene. The EO had a weak activity against all strains of Candida albicans (MIC 1000μg/mL) and had no activity against non-albicans strains, bacteria, and C. albicans biofilm. Cytostatic activity against all tumor cell lines was shown. Additionally, cell viability remained at EO concentrations up to 62.5 μg/mL. At 16 mg/mL, 50% hemolysis was observed, and it had low toxicity in vivo. Overall, the S. terebinthifolia EO was characterized by low antimicrobial and antibiofilm activities, with no evidence of toxicity to human tumor and non-tumor cells.
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Universidade de São Paulo, Faculdade de Ciências Farmacêuticas
2022
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oai:scielo:S1984-825020220001007722022-11-29Biological properties of Schinus terebinthifolia Raddi essential oilVasconcelos,Priscilla Guimarães SilvaAlves,Érika PonchetMaia,Carolina Medeiros de AlmeidaBrito,Arella Cristina MunizSilva,Diego RomárioFreires,Irlan AlmeidaCavalcanti,Yuri WanderleyRehder,Vera Lucia GarciaRuiz,Ana Lúcia Tasca GoisDuarte,Marta Cristina TeixeiraRosalen,Pedro LuizGodoy,Gustavo PinaCosta,Edja Maria Melo de Brito Anacardiaceae Medicinal plants Products with antimicrobial action Toxicity test Abstract Schinus terebinthifolia Raddi green fruits essential oil (EO) was evaluated regarding its phytochemical profile, antimicrobial and cytotoxic activities, and toxicity. Gas chromatography with mass spectrometry was applied to identify its constituents, thereafter the minimum inhibitory concentration, minimum bactericidal and fungicidal concentrations, and its antibiofilm activity were evaluated. The EO cytotoxicity was assessed in tumor and non-tumor human cells, and in vivo toxicity was evaluated in a Galleria mellonella model. The major constituents of S. terebinthifolia EO were alpha-phellandrene and beta-phellandrene. The EO had a weak activity against all strains of Candida albicans (MIC 1000μg/mL) and had no activity against non-albicans strains, bacteria, and C. albicans biofilm. Cytostatic activity against all tumor cell lines was shown. Additionally, cell viability remained at EO concentrations up to 62.5 μg/mL. At 16 mg/mL, 50% hemolysis was observed, and it had low toxicity in vivo. Overall, the S. terebinthifolia EO was characterized by low antimicrobial and antibiofilm activities, with no evidence of toxicity to human tumor and non-tumor cells.info:eu-repo/semantics/openAccessUniversidade de São Paulo, Faculdade de Ciências FarmacêuticasBrazilian Journal of Pharmaceutical Sciences v.58 20222022-01-01info:eu-repo/semantics/articletext/htmlhttp://old.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502022000100772en10.1590/s2175-97902021000x2e20417 |
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Vasconcelos,Priscilla Guimarães Silva Alves,Érika Ponchet Maia,Carolina Medeiros de Almeida Brito,Arella Cristina Muniz Silva,Diego Romário Freires,Irlan Almeida Cavalcanti,Yuri Wanderley Rehder,Vera Lucia Garcia Ruiz,Ana Lúcia Tasca Gois Duarte,Marta Cristina Teixeira Rosalen,Pedro Luiz Godoy,Gustavo Pina Costa,Edja Maria Melo de Brito |
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Vasconcelos,Priscilla Guimarães Silva Alves,Érika Ponchet Maia,Carolina Medeiros de Almeida Brito,Arella Cristina Muniz Silva,Diego Romário Freires,Irlan Almeida Cavalcanti,Yuri Wanderley Rehder,Vera Lucia Garcia Ruiz,Ana Lúcia Tasca Gois Duarte,Marta Cristina Teixeira Rosalen,Pedro Luiz Godoy,Gustavo Pina Costa,Edja Maria Melo de Brito Biological properties of Schinus terebinthifolia Raddi essential oil |
author_facet |
Vasconcelos,Priscilla Guimarães Silva Alves,Érika Ponchet Maia,Carolina Medeiros de Almeida Brito,Arella Cristina Muniz Silva,Diego Romário Freires,Irlan Almeida Cavalcanti,Yuri Wanderley Rehder,Vera Lucia Garcia Ruiz,Ana Lúcia Tasca Gois Duarte,Marta Cristina Teixeira Rosalen,Pedro Luiz Godoy,Gustavo Pina Costa,Edja Maria Melo de Brito |
author_sort |
Vasconcelos,Priscilla Guimarães Silva |
title |
Biological properties of Schinus terebinthifolia Raddi essential oil |
title_short |
Biological properties of Schinus terebinthifolia Raddi essential oil |
title_full |
Biological properties of Schinus terebinthifolia Raddi essential oil |
title_fullStr |
Biological properties of Schinus terebinthifolia Raddi essential oil |
title_full_unstemmed |
Biological properties of Schinus terebinthifolia Raddi essential oil |
title_sort |
biological properties of schinus terebinthifolia raddi essential oil |
description |
Abstract Schinus terebinthifolia Raddi green fruits essential oil (EO) was evaluated regarding its phytochemical profile, antimicrobial and cytotoxic activities, and toxicity. Gas chromatography with mass spectrometry was applied to identify its constituents, thereafter the minimum inhibitory concentration, minimum bactericidal and fungicidal concentrations, and its antibiofilm activity were evaluated. The EO cytotoxicity was assessed in tumor and non-tumor human cells, and in vivo toxicity was evaluated in a Galleria mellonella model. The major constituents of S. terebinthifolia EO were alpha-phellandrene and beta-phellandrene. The EO had a weak activity against all strains of Candida albicans (MIC 1000μg/mL) and had no activity against non-albicans strains, bacteria, and C. albicans biofilm. Cytostatic activity against all tumor cell lines was shown. Additionally, cell viability remained at EO concentrations up to 62.5 μg/mL. At 16 mg/mL, 50% hemolysis was observed, and it had low toxicity in vivo. Overall, the S. terebinthifolia EO was characterized by low antimicrobial and antibiofilm activities, with no evidence of toxicity to human tumor and non-tumor cells. |
publisher |
Universidade de São Paulo, Faculdade de Ciências Farmacêuticas |
publishDate |
2022 |
url |
http://old.scielo.br/scielo.php?script=sci_arttext&pid=S1984-82502022000100772 |
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