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Anti-Trypanosomatidae Activity of Essential Oils and Their Main Components from Selected Medicinal Plants

Kinetoplastida is a group of flagellated protozoa characterized by the presence of a kinetoplast, a structure which is part of a large mitochondria and contains DNA. Parasites of this group include genera such as Leishmania, that cause disease in humans and animals, and Phytomonas, that are capable...

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Autores principales: Bailén, María, Illescas, Cristina, Quijada, Mónica, Martínez-Díaz, Rafael Alberto, Ochoa, Eneko, Gómez-Muñoz, María Teresa, Navarro-Rocha, Juliana, González-Coloma, Azucena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9920086/
https://www.ncbi.nlm.nih.gov/pubmed/36771132
http://dx.doi.org/10.3390/molecules28031467
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author Bailén, María
Illescas, Cristina
Quijada, Mónica
Martínez-Díaz, Rafael Alberto
Ochoa, Eneko
Gómez-Muñoz, María Teresa
Navarro-Rocha, Juliana
González-Coloma, Azucena
author_facet Bailén, María
Illescas, Cristina
Quijada, Mónica
Martínez-Díaz, Rafael Alberto
Ochoa, Eneko
Gómez-Muñoz, María Teresa
Navarro-Rocha, Juliana
González-Coloma, Azucena
author_sort Bailén, María
collection PubMed
description Kinetoplastida is a group of flagellated protozoa characterized by the presence of a kinetoplast, a structure which is part of a large mitochondria and contains DNA. Parasites of this group include genera such as Leishmania, that cause disease in humans and animals, and Phytomonas, that are capable of infecting plants. Due to the lack of treatments, the low efficacy, or the high toxicity of the employed therapeutic agents there is a need to seek potential alternative treatments. In the present work, the antiparasitic activity on Leishmania infantum and Phytomonas davidi of 23 essential oils (EOs) from plants of the Lamiaceae and Asteraceae families, extracted by hydrodistillation (HD) at laboratory scale and steam distillation (SD) in a pilot plant, were evaluated. The chemical compositions of the EOs were determined by gas chromatography-mass spectrometry. Additionally, the cytotoxic activity on mammalian cells of the major components from the most active EOs was evaluated, and their anti-Phytomonas and anti-Leishmania effects analyzed. L. infantum was more sensitive to the EOs than P. davidi. The EOs with the best anti-kinetoplastid activity were S. montana, T. vulgaris, M. suaveolens, and L. luisieri. Steam distillation increased the linalyl acetate, β-caryophyllene, and trans-α-necrodyl acetate contents of the EOs, and decreased the amount of borneol and 1,8 cineol. The major active components of the EOs were tested, with thymol being the strongest anti-Phytomonas compound followed by carvacrol. Our study identified potential treatments against kinetoplastids.
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spelling pubmed-99200862023-02-12 Anti-Trypanosomatidae Activity of Essential Oils and Their Main Components from Selected Medicinal Plants Bailén, María Illescas, Cristina Quijada, Mónica Martínez-Díaz, Rafael Alberto Ochoa, Eneko Gómez-Muñoz, María Teresa Navarro-Rocha, Juliana González-Coloma, Azucena Molecules Article Kinetoplastida is a group of flagellated protozoa characterized by the presence of a kinetoplast, a structure which is part of a large mitochondria and contains DNA. Parasites of this group include genera such as Leishmania, that cause disease in humans and animals, and Phytomonas, that are capable of infecting plants. Due to the lack of treatments, the low efficacy, or the high toxicity of the employed therapeutic agents there is a need to seek potential alternative treatments. In the present work, the antiparasitic activity on Leishmania infantum and Phytomonas davidi of 23 essential oils (EOs) from plants of the Lamiaceae and Asteraceae families, extracted by hydrodistillation (HD) at laboratory scale and steam distillation (SD) in a pilot plant, were evaluated. The chemical compositions of the EOs were determined by gas chromatography-mass spectrometry. Additionally, the cytotoxic activity on mammalian cells of the major components from the most active EOs was evaluated, and their anti-Phytomonas and anti-Leishmania effects analyzed. L. infantum was more sensitive to the EOs than P. davidi. The EOs with the best anti-kinetoplastid activity were S. montana, T. vulgaris, M. suaveolens, and L. luisieri. Steam distillation increased the linalyl acetate, β-caryophyllene, and trans-α-necrodyl acetate contents of the EOs, and decreased the amount of borneol and 1,8 cineol. The major active components of the EOs were tested, with thymol being the strongest anti-Phytomonas compound followed by carvacrol. Our study identified potential treatments against kinetoplastids. MDPI 2023-02-02 /pmc/articles/PMC9920086/ /pubmed/36771132 http://dx.doi.org/10.3390/molecules28031467 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
Bailén, María
Illescas, Cristina
Quijada, Mónica
Martínez-Díaz, Rafael Alberto
Ochoa, Eneko
Gómez-Muñoz, María Teresa
Navarro-Rocha, Juliana
González-Coloma, Azucena
Anti-Trypanosomatidae Activity of Essential Oils and Their Main Components from Selected Medicinal Plants
title Anti-Trypanosomatidae Activity of Essential Oils and Their Main Components from Selected Medicinal Plants
title_full Anti-Trypanosomatidae Activity of Essential Oils and Their Main Components from Selected Medicinal Plants
title_fullStr Anti-Trypanosomatidae Activity of Essential Oils and Their Main Components from Selected Medicinal Plants
title_full_unstemmed Anti-Trypanosomatidae Activity of Essential Oils and Their Main Components from Selected Medicinal Plants
title_short Anti-Trypanosomatidae Activity of Essential Oils and Their Main Components from Selected Medicinal Plants
title_sort anti-trypanosomatidae activity of essential oils and their main components from selected medicinal plants
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9920086/
https://www.ncbi.nlm.nih.gov/pubmed/36771132
http://dx.doi.org/10.3390/molecules28031467
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