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Interaction of ascaridole, carvacrol, and caryophyllene oxide from essential oil of Chenopodium ambrosioides L. with mitochondria in Leishmania and other eukaryotes

The antileishmanial activity of the essential oil (EO) from Chenopodium ambrosioides L. has been demonstrated in vitro and in animal models, attributed to the major components of the EO. This study focused on the effects of the three major EO compounds carvacrol, caryophyllene oxide (Caryo), and the...

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Autores principales: Monzote, Lianet, Geroldinger, Gerald, Tonner, Matthias, Scull, Ramón, De Sarkar, Sritama, Bergmann, Sophie, Bacher, Markus, Staniek, Katrin, Chatterjee, Mitali, Rosenau, Thomas, Gille, Lars
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6208284/
https://www.ncbi.nlm.nih.gov/pubmed/29672979
http://dx.doi.org/10.1002/ptr.6097
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author Monzote, Lianet
Geroldinger, Gerald
Tonner, Matthias
Scull, Ramón
De Sarkar, Sritama
Bergmann, Sophie
Bacher, Markus
Staniek, Katrin
Chatterjee, Mitali
Rosenau, Thomas
Gille, Lars
author_facet Monzote, Lianet
Geroldinger, Gerald
Tonner, Matthias
Scull, Ramón
De Sarkar, Sritama
Bergmann, Sophie
Bacher, Markus
Staniek, Katrin
Chatterjee, Mitali
Rosenau, Thomas
Gille, Lars
author_sort Monzote, Lianet
collection PubMed
description The antileishmanial activity of the essential oil (EO) from Chenopodium ambrosioides L. has been demonstrated in vitro and in animal models, attributed to the major components of the EO. This study focused on the effects of the three major EO compounds carvacrol, caryophyllene oxide (Caryo), and the antileishmanial endoperoxide ascaridole (Asc) on mitochondrial functions in Leishmania tarentolae promastigotes (LtP). EO and Caryo were able to partially inhibit the leishmanial electron transport chain, whereas other components failed to demonstrate a direct immediate effect. Caryo demonstrated inhibition of complex III activity in LtP and in isolated complex III from other species. The formation of superoxide radicals was studied in Leishmania by electron spin resonance spectroscopy in the presence of iron chelators wherein selected compounds failed to trigger a significant immediate additional superoxide production in LtP. However, upon prolonged incubation of Leishmania with Asc and especially in the absence of iron chelators (allowing the activation of Asc), an increased superoxide radical production and significant impairment of mitochondrial coupling in Leishmania was observed. Prolonged incubation with all EO components resulted in thiol depletion. Taken together, the major components of EO mediate their leishmanicidal activity via different mitochondrial targets and time profiles. Further studies are required to elucidate possible synergistic effects of carvacrol and Asc and the influence of minor compounds.
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spelling pubmed-62082842018-11-06 Interaction of ascaridole, carvacrol, and caryophyllene oxide from essential oil of Chenopodium ambrosioides L. with mitochondria in Leishmania and other eukaryotes Monzote, Lianet Geroldinger, Gerald Tonner, Matthias Scull, Ramón De Sarkar, Sritama Bergmann, Sophie Bacher, Markus Staniek, Katrin Chatterjee, Mitali Rosenau, Thomas Gille, Lars Phytother Res Research Articles The antileishmanial activity of the essential oil (EO) from Chenopodium ambrosioides L. has been demonstrated in vitro and in animal models, attributed to the major components of the EO. This study focused on the effects of the three major EO compounds carvacrol, caryophyllene oxide (Caryo), and the antileishmanial endoperoxide ascaridole (Asc) on mitochondrial functions in Leishmania tarentolae promastigotes (LtP). EO and Caryo were able to partially inhibit the leishmanial electron transport chain, whereas other components failed to demonstrate a direct immediate effect. Caryo demonstrated inhibition of complex III activity in LtP and in isolated complex III from other species. The formation of superoxide radicals was studied in Leishmania by electron spin resonance spectroscopy in the presence of iron chelators wherein selected compounds failed to trigger a significant immediate additional superoxide production in LtP. However, upon prolonged incubation of Leishmania with Asc and especially in the absence of iron chelators (allowing the activation of Asc), an increased superoxide radical production and significant impairment of mitochondrial coupling in Leishmania was observed. Prolonged incubation with all EO components resulted in thiol depletion. Taken together, the major components of EO mediate their leishmanicidal activity via different mitochondrial targets and time profiles. Further studies are required to elucidate possible synergistic effects of carvacrol and Asc and the influence of minor compounds. John Wiley and Sons Inc. 2018-04-19 2018-09 /pmc/articles/PMC6208284/ /pubmed/29672979 http://dx.doi.org/10.1002/ptr.6097 Text en © 2018 The Authors. Phytotherapy Research Published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Monzote, Lianet
Geroldinger, Gerald
Tonner, Matthias
Scull, Ramón
De Sarkar, Sritama
Bergmann, Sophie
Bacher, Markus
Staniek, Katrin
Chatterjee, Mitali
Rosenau, Thomas
Gille, Lars
Interaction of ascaridole, carvacrol, and caryophyllene oxide from essential oil of Chenopodium ambrosioides L. with mitochondria in Leishmania and other eukaryotes
title Interaction of ascaridole, carvacrol, and caryophyllene oxide from essential oil of Chenopodium ambrosioides L. with mitochondria in Leishmania and other eukaryotes
title_full Interaction of ascaridole, carvacrol, and caryophyllene oxide from essential oil of Chenopodium ambrosioides L. with mitochondria in Leishmania and other eukaryotes
title_fullStr Interaction of ascaridole, carvacrol, and caryophyllene oxide from essential oil of Chenopodium ambrosioides L. with mitochondria in Leishmania and other eukaryotes
title_full_unstemmed Interaction of ascaridole, carvacrol, and caryophyllene oxide from essential oil of Chenopodium ambrosioides L. with mitochondria in Leishmania and other eukaryotes
title_short Interaction of ascaridole, carvacrol, and caryophyllene oxide from essential oil of Chenopodium ambrosioides L. with mitochondria in Leishmania and other eukaryotes
title_sort interaction of ascaridole, carvacrol, and caryophyllene oxide from essential oil of chenopodium ambrosioides l. with mitochondria in leishmania and other eukaryotes
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6208284/
https://www.ncbi.nlm.nih.gov/pubmed/29672979
http://dx.doi.org/10.1002/ptr.6097
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