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Chemical Composition, Preliminary Toxicity, and Antioxidant Potential of Piper marginatum Sensu Lato Essential Oils and Molecular Modeling Study

The essential oils (OEs) of the leaves, stems, and spikes of P. marginatum were obtained by hydrodistillation, steam distillation, and simultaneous extraction. The chemical constituents were identified and quantified by GC/MS and GC-FID. The preliminary biological activity was determined by assessin...

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Autores principales: Feitosa, Bruna de Souza, Ferreira, Oberdan Oliveira, Mali, Suraj N., Anand, Amit, Cruz, Jorddy Nevez, Franco, Celeste de Jesus Pereira, Mahawer, Sonu Kumar, Kumar, Ravendra, Cascaes, Marcia Moraes, de Oliveira, Mozaniel Santana, Andrade, Eloisa Helena de Aguiar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10421147/
https://www.ncbi.nlm.nih.gov/pubmed/37570784
http://dx.doi.org/10.3390/molecules28155814
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author Feitosa, Bruna de Souza
Ferreira, Oberdan Oliveira
Mali, Suraj N.
Anand, Amit
Cruz, Jorddy Nevez
Franco, Celeste de Jesus Pereira
Mahawer, Sonu Kumar
Kumar, Ravendra
Cascaes, Marcia Moraes
de Oliveira, Mozaniel Santana
Andrade, Eloisa Helena de Aguiar
author_facet Feitosa, Bruna de Souza
Ferreira, Oberdan Oliveira
Mali, Suraj N.
Anand, Amit
Cruz, Jorddy Nevez
Franco, Celeste de Jesus Pereira
Mahawer, Sonu Kumar
Kumar, Ravendra
Cascaes, Marcia Moraes
de Oliveira, Mozaniel Santana
Andrade, Eloisa Helena de Aguiar
author_sort Feitosa, Bruna de Souza
collection PubMed
description The essential oils (OEs) of the leaves, stems, and spikes of P. marginatum were obtained by hydrodistillation, steam distillation, and simultaneous extraction. The chemical constituents were identified and quantified by GC/MS and GC-FID. The preliminary biological activity was determined by assessing the toxicity of the samples to Artemia salina Leach larvae and calculating the mortality rate and lethal concentration (LC(50)). The antioxidant activity of the EOs was determined by the DPPH radical scavenging method. Molecular modeling was performed using molecular docking and molecular dynamics, with acetylcholinesterase being the molecular target. The OES yields ranged from 1.49% to 1.83%. The EOs and aromatic constituents of P. marginatum are characterized by the high contents of (E)-isoosmorhizole (19.4–32.9%), 2-methoxy-4,5-methylenedioxypropiophenone (9.0–19.9%), isoosmorhizole (1.6–24.5%), and 2-methoxy-4,5-methylenedioxypropiophenone isomer (1.6–14.3%). The antioxidant potential was significant in the OE of the leaves and stems of P. marginatum extracted by SD in November (84.9 ± 4.0 mg TE·mL(−1)) and the OEs of the leaves extracted by HD in March (126.8 ± 12.3 mg TE·mL(−1)). Regarding the preliminary toxicity, the OEs of Pm-SD-L-St-Nov and Pm-HD-L-St-Nov had mortality higher than 80% in concentrations of 25 µg·mL(−1). This in silico study on essential oils elucidated the potential mechanism of interaction of the main compounds, which may serve as a basis for advances in this line of research.
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spelling pubmed-104211472023-08-12 Chemical Composition, Preliminary Toxicity, and Antioxidant Potential of Piper marginatum Sensu Lato Essential Oils and Molecular Modeling Study Feitosa, Bruna de Souza Ferreira, Oberdan Oliveira Mali, Suraj N. Anand, Amit Cruz, Jorddy Nevez Franco, Celeste de Jesus Pereira Mahawer, Sonu Kumar Kumar, Ravendra Cascaes, Marcia Moraes de Oliveira, Mozaniel Santana Andrade, Eloisa Helena de Aguiar Molecules Article The essential oils (OEs) of the leaves, stems, and spikes of P. marginatum were obtained by hydrodistillation, steam distillation, and simultaneous extraction. The chemical constituents were identified and quantified by GC/MS and GC-FID. The preliminary biological activity was determined by assessing the toxicity of the samples to Artemia salina Leach larvae and calculating the mortality rate and lethal concentration (LC(50)). The antioxidant activity of the EOs was determined by the DPPH radical scavenging method. Molecular modeling was performed using molecular docking and molecular dynamics, with acetylcholinesterase being the molecular target. The OES yields ranged from 1.49% to 1.83%. The EOs and aromatic constituents of P. marginatum are characterized by the high contents of (E)-isoosmorhizole (19.4–32.9%), 2-methoxy-4,5-methylenedioxypropiophenone (9.0–19.9%), isoosmorhizole (1.6–24.5%), and 2-methoxy-4,5-methylenedioxypropiophenone isomer (1.6–14.3%). The antioxidant potential was significant in the OE of the leaves and stems of P. marginatum extracted by SD in November (84.9 ± 4.0 mg TE·mL(−1)) and the OEs of the leaves extracted by HD in March (126.8 ± 12.3 mg TE·mL(−1)). Regarding the preliminary toxicity, the OEs of Pm-SD-L-St-Nov and Pm-HD-L-St-Nov had mortality higher than 80% in concentrations of 25 µg·mL(−1). This in silico study on essential oils elucidated the potential mechanism of interaction of the main compounds, which may serve as a basis for advances in this line of research. MDPI 2023-08-01 /pmc/articles/PMC10421147/ /pubmed/37570784 http://dx.doi.org/10.3390/molecules28155814 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Feitosa, Bruna de Souza
Ferreira, Oberdan Oliveira
Mali, Suraj N.
Anand, Amit
Cruz, Jorddy Nevez
Franco, Celeste de Jesus Pereira
Mahawer, Sonu Kumar
Kumar, Ravendra
Cascaes, Marcia Moraes
de Oliveira, Mozaniel Santana
Andrade, Eloisa Helena de Aguiar
Chemical Composition, Preliminary Toxicity, and Antioxidant Potential of Piper marginatum Sensu Lato Essential Oils and Molecular Modeling Study
title Chemical Composition, Preliminary Toxicity, and Antioxidant Potential of Piper marginatum Sensu Lato Essential Oils and Molecular Modeling Study
title_full Chemical Composition, Preliminary Toxicity, and Antioxidant Potential of Piper marginatum Sensu Lato Essential Oils and Molecular Modeling Study
title_fullStr Chemical Composition, Preliminary Toxicity, and Antioxidant Potential of Piper marginatum Sensu Lato Essential Oils and Molecular Modeling Study
title_full_unstemmed Chemical Composition, Preliminary Toxicity, and Antioxidant Potential of Piper marginatum Sensu Lato Essential Oils and Molecular Modeling Study
title_short Chemical Composition, Preliminary Toxicity, and Antioxidant Potential of Piper marginatum Sensu Lato Essential Oils and Molecular Modeling Study
title_sort chemical composition, preliminary toxicity, and antioxidant potential of piper marginatum sensu lato essential oils and molecular modeling study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10421147/
https://www.ncbi.nlm.nih.gov/pubmed/37570784
http://dx.doi.org/10.3390/molecules28155814
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