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Mitochondrial Imbalance of Trypanosoma cruzi Induced by the Marine Alkaloid 6-Bromo-2′-de-N-Methylaplysinopsin

[Image: see text] Chagas disease, caused by Trypanosoma cruzi, affects seven million people worldwide and lacks effective treatments. Using bioactivity-guided fractionation, NMR, and electrospray ionization-high resolution mass spectrometry (ESI-HRMS) spectral analysis, the indole alkaloid 6-bromo-2...

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Autores principales: Romanelli, Maiara M., Amaral, Maiara, Thevenard, Fernanda, Santa Cruz, Lucas M., Regasini, Luis O., Migotto, Alvaro E., Lago, João Henrique G., Tempone, Andre G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2022
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9387129/
https://www.ncbi.nlm.nih.gov/pubmed/35990437
http://dx.doi.org/10.1021/acsomega.2c03395
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author Romanelli, Maiara M.
Amaral, Maiara
Thevenard, Fernanda
Santa Cruz, Lucas M.
Regasini, Luis O.
Migotto, Alvaro E.
Lago, João Henrique G.
Tempone, Andre G.
author_facet Romanelli, Maiara M.
Amaral, Maiara
Thevenard, Fernanda
Santa Cruz, Lucas M.
Regasini, Luis O.
Migotto, Alvaro E.
Lago, João Henrique G.
Tempone, Andre G.
author_sort Romanelli, Maiara M.
collection PubMed
description [Image: see text] Chagas disease, caused by Trypanosoma cruzi, affects seven million people worldwide and lacks effective treatments. Using bioactivity-guided fractionation, NMR, and electrospray ionization-high resolution mass spectrometry (ESI-HRMS) spectral analysis, the indole alkaloid 6-bromo-2′-de-N-methylaplysinopsin (BMA) was isolated and chemically characterized from the marine coral Tubastraea tagusensis. BMA was tested against trypomastigotes and intracellular amastigotes of T. cruzi, resulting in IC(50) values of 62 and 5.7 μM, respectively, with no mammalian cytotoxicity. The mechanism of action studies showed that BMA induced no alterations in the plasma membrane permeability but caused depolarization of the mitochondrial membrane potential, reducing ATP levels. Intracellular calcium levels were also reduced after the treatment, which was associated with pH alteration of acidocalcisomes. Using matrix-assisted laser desorption/ionization-time of flight (MALDI-TOF)/MS analysis, alterations of mass spectral signals were observed after treatment with BMA, suggesting a different mechanism from benznidazole. In silico pharmacokinetic–pharmacodynamic (PKPD) parameters suggested a drug-likeness property, supporting the promising usefulness of this compound as a new hit for optimizations.
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spelling pubmed-93871292022-08-19 Mitochondrial Imbalance of Trypanosoma cruzi Induced by the Marine Alkaloid 6-Bromo-2′-de-N-Methylaplysinopsin Romanelli, Maiara M. Amaral, Maiara Thevenard, Fernanda Santa Cruz, Lucas M. Regasini, Luis O. Migotto, Alvaro E. Lago, João Henrique G. Tempone, Andre G. ACS Omega [Image: see text] Chagas disease, caused by Trypanosoma cruzi, affects seven million people worldwide and lacks effective treatments. Using bioactivity-guided fractionation, NMR, and electrospray ionization-high resolution mass spectrometry (ESI-HRMS) spectral analysis, the indole alkaloid 6-bromo-2′-de-N-methylaplysinopsin (BMA) was isolated and chemically characterized from the marine coral Tubastraea tagusensis. BMA was tested against trypomastigotes and intracellular amastigotes of T. cruzi, resulting in IC(50) values of 62 and 5.7 μM, respectively, with no mammalian cytotoxicity. The mechanism of action studies showed that BMA induced no alterations in the plasma membrane permeability but caused depolarization of the mitochondrial membrane potential, reducing ATP levels. Intracellular calcium levels were also reduced after the treatment, which was associated with pH alteration of acidocalcisomes. Using matrix-assisted laser desorption/ionization-time of flight (MALDI-TOF)/MS analysis, alterations of mass spectral signals were observed after treatment with BMA, suggesting a different mechanism from benznidazole. In silico pharmacokinetic–pharmacodynamic (PKPD) parameters suggested a drug-likeness property, supporting the promising usefulness of this compound as a new hit for optimizations. American Chemical Society 2022-08-04 /pmc/articles/PMC9387129/ /pubmed/35990437 http://dx.doi.org/10.1021/acsomega.2c03395 Text en © 2022 The Authors. Published by American Chemical Society https://creativecommons.org/licenses/by-nc-nd/4.0/Permits non-commercial access and re-use, provided that author attribution and integrity are maintained; but does not permit creation of adaptations or other derivative works (https://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Romanelli, Maiara M.
Amaral, Maiara
Thevenard, Fernanda
Santa Cruz, Lucas M.
Regasini, Luis O.
Migotto, Alvaro E.
Lago, João Henrique G.
Tempone, Andre G.
Mitochondrial Imbalance of Trypanosoma cruzi Induced by the Marine Alkaloid 6-Bromo-2′-de-N-Methylaplysinopsin
title Mitochondrial Imbalance of Trypanosoma cruzi Induced by the Marine Alkaloid 6-Bromo-2′-de-N-Methylaplysinopsin
title_full Mitochondrial Imbalance of Trypanosoma cruzi Induced by the Marine Alkaloid 6-Bromo-2′-de-N-Methylaplysinopsin
title_fullStr Mitochondrial Imbalance of Trypanosoma cruzi Induced by the Marine Alkaloid 6-Bromo-2′-de-N-Methylaplysinopsin
title_full_unstemmed Mitochondrial Imbalance of Trypanosoma cruzi Induced by the Marine Alkaloid 6-Bromo-2′-de-N-Methylaplysinopsin
title_short Mitochondrial Imbalance of Trypanosoma cruzi Induced by the Marine Alkaloid 6-Bromo-2′-de-N-Methylaplysinopsin
title_sort mitochondrial imbalance of trypanosoma cruzi induced by the marine alkaloid 6-bromo-2′-de-n-methylaplysinopsin
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9387129/
https://www.ncbi.nlm.nih.gov/pubmed/35990437
http://dx.doi.org/10.1021/acsomega.2c03395
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