Cargando…
A Triazole Hybrid of Neolignans as a Potential Antileishmanial Agent by Triggering Mitochondrial Dysfunction
In the search for new compounds with antileishmanial activity, we synthesized a triazole hybrid analogue of the neolignans grandisin and machilin G (LASQUIM 25), which was previously found highly active against both promastigotes and intracellular amastigote forms of Leishmania amazonensis. In this...
Autores principales: | , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2019
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6983227/ https://www.ncbi.nlm.nih.gov/pubmed/31861910 http://dx.doi.org/10.3390/molecules25010037 |
_version_ | 1783491471660285952 |
---|---|
author | Cardozo Pinto de Arruda, Carla de Jesus Hardoim, Daiana Silva Rizk, Yasmin da Silva Freitas de Souza, Celeste Zaverucha do Valle, Tânia Bento Carvalho, Diego Nosomi Taniwaki, Noemi de Morais Baroni, Adriano Cesar da Silva Calabrese, Kátia |
author_facet | Cardozo Pinto de Arruda, Carla de Jesus Hardoim, Daiana Silva Rizk, Yasmin da Silva Freitas de Souza, Celeste Zaverucha do Valle, Tânia Bento Carvalho, Diego Nosomi Taniwaki, Noemi de Morais Baroni, Adriano Cesar da Silva Calabrese, Kátia |
author_sort | Cardozo Pinto de Arruda, Carla |
collection | PubMed |
description | In the search for new compounds with antileishmanial activity, we synthesized a triazole hybrid analogue of the neolignans grandisin and machilin G (LASQUIM 25), which was previously found highly active against both promastigotes and intracellular amastigote forms of Leishmania amazonensis. In this work, we investigated the leishmanicidal effects of LASQUIM 25 to identify the mechanisms involved in the cell death of L. amazonensis promastigotes. Transmission electron microscopy (TEM) analysis showed marked effects of LASQUIM 25 (IC(50) = 7.2 µM) on the morphology of promastigote forms, notably on mitochondria. The direct action of the triazole derivative on the parasite was noticed over time from 2 h to 48 h, and cells displayed several ultrastructural alterations characteristic of apoptotic cells. Also, flow cytometric analysis (FACS) after TMRE staining detected changes in mitochondrial membrane potential after LASQUIM 25 treatment (64.83% labeling versus 83.38% labeling in nontreated cells). On the other hand, FACS after PI staining in 24 h-treatment showed a slight alteration in the integrity of the cell membrane, a necrotic event (16.76% necrotic cells versus 3.19% staining in live parasites). An abnormal secretion of lipids was observed, suggesting an exocytic activity. Another striking finding was the presence of autophagy-related lysosome-like vacuoles, suggesting an autophagic cell death that may arise as consequence of mitochondrial stress. Taken together, these results suggest that LASQUIM 25 leishmanicidal mechanisms involve some degree of mitochondrial dysregulation, already evidenced by the treatment with the IC(50) of this compound. This effect may be due to the presence of a methylenedioxy group originated from machilin G, whose toxicity has been associated with the capacity to generate electrophilic intermediates. |
format | Online Article Text |
id | pubmed-6983227 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2019 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-69832272020-02-06 A Triazole Hybrid of Neolignans as a Potential Antileishmanial Agent by Triggering Mitochondrial Dysfunction Cardozo Pinto de Arruda, Carla de Jesus Hardoim, Daiana Silva Rizk, Yasmin da Silva Freitas de Souza, Celeste Zaverucha do Valle, Tânia Bento Carvalho, Diego Nosomi Taniwaki, Noemi de Morais Baroni, Adriano Cesar da Silva Calabrese, Kátia Molecules Article In the search for new compounds with antileishmanial activity, we synthesized a triazole hybrid analogue of the neolignans grandisin and machilin G (LASQUIM 25), which was previously found highly active against both promastigotes and intracellular amastigote forms of Leishmania amazonensis. In this work, we investigated the leishmanicidal effects of LASQUIM 25 to identify the mechanisms involved in the cell death of L. amazonensis promastigotes. Transmission electron microscopy (TEM) analysis showed marked effects of LASQUIM 25 (IC(50) = 7.2 µM) on the morphology of promastigote forms, notably on mitochondria. The direct action of the triazole derivative on the parasite was noticed over time from 2 h to 48 h, and cells displayed several ultrastructural alterations characteristic of apoptotic cells. Also, flow cytometric analysis (FACS) after TMRE staining detected changes in mitochondrial membrane potential after LASQUIM 25 treatment (64.83% labeling versus 83.38% labeling in nontreated cells). On the other hand, FACS after PI staining in 24 h-treatment showed a slight alteration in the integrity of the cell membrane, a necrotic event (16.76% necrotic cells versus 3.19% staining in live parasites). An abnormal secretion of lipids was observed, suggesting an exocytic activity. Another striking finding was the presence of autophagy-related lysosome-like vacuoles, suggesting an autophagic cell death that may arise as consequence of mitochondrial stress. Taken together, these results suggest that LASQUIM 25 leishmanicidal mechanisms involve some degree of mitochondrial dysregulation, already evidenced by the treatment with the IC(50) of this compound. This effect may be due to the presence of a methylenedioxy group originated from machilin G, whose toxicity has been associated with the capacity to generate electrophilic intermediates. MDPI 2019-12-20 /pmc/articles/PMC6983227/ /pubmed/31861910 http://dx.doi.org/10.3390/molecules25010037 Text en © 2019 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 Cardozo Pinto de Arruda, Carla de Jesus Hardoim, Daiana Silva Rizk, Yasmin da Silva Freitas de Souza, Celeste Zaverucha do Valle, Tânia Bento Carvalho, Diego Nosomi Taniwaki, Noemi de Morais Baroni, Adriano Cesar da Silva Calabrese, Kátia A Triazole Hybrid of Neolignans as a Potential Antileishmanial Agent by Triggering Mitochondrial Dysfunction |
title | A Triazole Hybrid of Neolignans as a Potential Antileishmanial Agent by Triggering Mitochondrial Dysfunction |
title_full | A Triazole Hybrid of Neolignans as a Potential Antileishmanial Agent by Triggering Mitochondrial Dysfunction |
title_fullStr | A Triazole Hybrid of Neolignans as a Potential Antileishmanial Agent by Triggering Mitochondrial Dysfunction |
title_full_unstemmed | A Triazole Hybrid of Neolignans as a Potential Antileishmanial Agent by Triggering Mitochondrial Dysfunction |
title_short | A Triazole Hybrid of Neolignans as a Potential Antileishmanial Agent by Triggering Mitochondrial Dysfunction |
title_sort | triazole hybrid of neolignans as a potential antileishmanial agent by triggering mitochondrial dysfunction |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6983227/ https://www.ncbi.nlm.nih.gov/pubmed/31861910 http://dx.doi.org/10.3390/molecules25010037 |
work_keys_str_mv | AT cardozopintodearrudacarla atriazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT dejesushardoimdaiana atriazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT silvarizkyasmin atriazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT dasilvafreitasdesouzaceleste atriazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT zaveruchadovalletania atriazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT bentocarvalhodiego atriazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT nosomitaniwakinoemi atriazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT demoraisbaroniadrianocesar atriazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT dasilvacalabresekatia atriazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT cardozopintodearrudacarla triazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT dejesushardoimdaiana triazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT silvarizkyasmin triazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT dasilvafreitasdesouzaceleste triazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT zaveruchadovalletania triazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT bentocarvalhodiego triazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT nosomitaniwakinoemi triazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT demoraisbaroniadrianocesar triazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction AT dasilvacalabresekatia triazolehybridofneolignansasapotentialantileishmanialagentbytriggeringmitochondrialdysfunction |