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Decoding the Role of Melatonin Structure on Plasmodium falciparum Human Malaria Parasites Synchronization Using 2-Sulfenylindoles Derivatives

Melatonin acts to synchronize the parasite’s intraerythrocytic cycle by triggering the phospholipase C-inositol 1,4,5-trisphosphate (PLC-IP(3)) signaling cascade. Compounds with an indole scaffold impair in vitro proliferation of blood-stage malaria parasites, indicating that this class of compounds...

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Autores principales: Mallaupoma, Lenna Rosanie Cordero, Dias, Bárbara Karina de Menezes, Singh, Maneesh Kumar, Honorio, Rute Isabel, Nakabashi, Myna, Kisukuri, Camila de Menezes, Paixão, Márcio Weber, Garcia, Celia R. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9138683/
https://www.ncbi.nlm.nih.gov/pubmed/35625565
http://dx.doi.org/10.3390/biom12050638
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author Mallaupoma, Lenna Rosanie Cordero
Dias, Bárbara Karina de Menezes
Singh, Maneesh Kumar
Honorio, Rute Isabel
Nakabashi, Myna
Kisukuri, Camila de Menezes
Paixão, Márcio Weber
Garcia, Celia R. S.
author_facet Mallaupoma, Lenna Rosanie Cordero
Dias, Bárbara Karina de Menezes
Singh, Maneesh Kumar
Honorio, Rute Isabel
Nakabashi, Myna
Kisukuri, Camila de Menezes
Paixão, Márcio Weber
Garcia, Celia R. S.
author_sort Mallaupoma, Lenna Rosanie Cordero
collection PubMed
description Melatonin acts to synchronize the parasite’s intraerythrocytic cycle by triggering the phospholipase C-inositol 1,4,5-trisphosphate (PLC-IP(3)) signaling cascade. Compounds with an indole scaffold impair in vitro proliferation of blood-stage malaria parasites, indicating that this class of compounds is potentially emerging antiplasmodial drugs. Therefore, we aimed to study the role of the alkyl and aryl thiol moieties of 14 synthetic indole compounds against chloroquine-sensitive (3D7) and chloroquine-resistant (Dd2) strains of Plasmodium falciparum. Four compounds (3, 26, 18, 21) inhibited the growth of P. falciparum (3D7) by 50% at concentrations below 20 µM. A set of 2-sulfenylindoles also showed activity against Dd2 parasites. Our data suggest that Dd2 parasites are more susceptible to compounds 20 and 28 than 3D7 parasites. These data show that 2-sulfenylindoles are promising antimalarials against chloroquine-resistant parasite strains. We also evaluated the effects of the 14 compounds on the parasitemia of the 3D7 strain and their ability to interfere with the effect of 100 nM melatonin on the parasitemia of the 3D7 strain. Our results showed that compounds 3, 7, 8, 10, 14, 16, 17, and 20 slightly increased the effect of melatonin by increasing parasitemia by 8–20% compared with that of melatonin-only-treated 3D7 parasites. Moreover, we found that melatonin modulates the expression of kinase-related signaling components giving additional evidence to investigate inhibitors that can block melatonin signaling.
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spelling pubmed-91386832022-05-28 Decoding the Role of Melatonin Structure on Plasmodium falciparum Human Malaria Parasites Synchronization Using 2-Sulfenylindoles Derivatives Mallaupoma, Lenna Rosanie Cordero Dias, Bárbara Karina de Menezes Singh, Maneesh Kumar Honorio, Rute Isabel Nakabashi, Myna Kisukuri, Camila de Menezes Paixão, Márcio Weber Garcia, Celia R. S. Biomolecules Article Melatonin acts to synchronize the parasite’s intraerythrocytic cycle by triggering the phospholipase C-inositol 1,4,5-trisphosphate (PLC-IP(3)) signaling cascade. Compounds with an indole scaffold impair in vitro proliferation of blood-stage malaria parasites, indicating that this class of compounds is potentially emerging antiplasmodial drugs. Therefore, we aimed to study the role of the alkyl and aryl thiol moieties of 14 synthetic indole compounds against chloroquine-sensitive (3D7) and chloroquine-resistant (Dd2) strains of Plasmodium falciparum. Four compounds (3, 26, 18, 21) inhibited the growth of P. falciparum (3D7) by 50% at concentrations below 20 µM. A set of 2-sulfenylindoles also showed activity against Dd2 parasites. Our data suggest that Dd2 parasites are more susceptible to compounds 20 and 28 than 3D7 parasites. These data show that 2-sulfenylindoles are promising antimalarials against chloroquine-resistant parasite strains. We also evaluated the effects of the 14 compounds on the parasitemia of the 3D7 strain and their ability to interfere with the effect of 100 nM melatonin on the parasitemia of the 3D7 strain. Our results showed that compounds 3, 7, 8, 10, 14, 16, 17, and 20 slightly increased the effect of melatonin by increasing parasitemia by 8–20% compared with that of melatonin-only-treated 3D7 parasites. Moreover, we found that melatonin modulates the expression of kinase-related signaling components giving additional evidence to investigate inhibitors that can block melatonin signaling. MDPI 2022-04-26 /pmc/articles/PMC9138683/ /pubmed/35625565 http://dx.doi.org/10.3390/biom12050638 Text en © 2022 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
Mallaupoma, Lenna Rosanie Cordero
Dias, Bárbara Karina de Menezes
Singh, Maneesh Kumar
Honorio, Rute Isabel
Nakabashi, Myna
Kisukuri, Camila de Menezes
Paixão, Márcio Weber
Garcia, Celia R. S.
Decoding the Role of Melatonin Structure on Plasmodium falciparum Human Malaria Parasites Synchronization Using 2-Sulfenylindoles Derivatives
title Decoding the Role of Melatonin Structure on Plasmodium falciparum Human Malaria Parasites Synchronization Using 2-Sulfenylindoles Derivatives
title_full Decoding the Role of Melatonin Structure on Plasmodium falciparum Human Malaria Parasites Synchronization Using 2-Sulfenylindoles Derivatives
title_fullStr Decoding the Role of Melatonin Structure on Plasmodium falciparum Human Malaria Parasites Synchronization Using 2-Sulfenylindoles Derivatives
title_full_unstemmed Decoding the Role of Melatonin Structure on Plasmodium falciparum Human Malaria Parasites Synchronization Using 2-Sulfenylindoles Derivatives
title_short Decoding the Role of Melatonin Structure on Plasmodium falciparum Human Malaria Parasites Synchronization Using 2-Sulfenylindoles Derivatives
title_sort decoding the role of melatonin structure on plasmodium falciparum human malaria parasites synchronization using 2-sulfenylindoles derivatives
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9138683/
https://www.ncbi.nlm.nih.gov/pubmed/35625565
http://dx.doi.org/10.3390/biom12050638
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