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Novel carbazole aminoalcohols as inhibitors of β-hematin formation: Antiplasmodial and antischistosomal activities

Malaria and schistosomiasis are two of the most socioeconomically devastating parasitic diseases in tropical and subtropical countries. Since current chemotherapeutic options are limited and defective, there is an urgent need to develop novel antiplasmodials and antischistosomals. Hemozoin is a disp...

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Autores principales: Wang, Weisi, Li, Qiang, Wei, Yufen, Xue, Jian, Sun, Xiao, Yu, Yang, Chen, Zhuo, Li, Shizhu, Duan, Liping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5384886/
https://www.ncbi.nlm.nih.gov/pubmed/28395189
http://dx.doi.org/10.1016/j.ijpddr.2017.03.007
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author Wang, Weisi
Li, Qiang
Wei, Yufen
Xue, Jian
Sun, Xiao
Yu, Yang
Chen, Zhuo
Li, Shizhu
Duan, Liping
author_facet Wang, Weisi
Li, Qiang
Wei, Yufen
Xue, Jian
Sun, Xiao
Yu, Yang
Chen, Zhuo
Li, Shizhu
Duan, Liping
author_sort Wang, Weisi
collection PubMed
description Malaria and schistosomiasis are two of the most socioeconomically devastating parasitic diseases in tropical and subtropical countries. Since current chemotherapeutic options are limited and defective, there is an urgent need to develop novel antiplasmodials and antischistosomals. Hemozoin is a disposal product formed from the hemoglobin digestion by some blood-feeding parasites. Hemozoin formation is an essential process for the parasites to detoxify free heme, which is a reliable therapeutic target for identifying novel antiparasitic agents. A series of novel carbazole aminoalcohols were designed and synthesized as potential antiplasmodial and antischistosomal agents, and several compounds showed potent in vitro activities against Plasmodium falciparum 3D7 and Dd2 strains and adult and juvenile Schistosoma japonicum. Investigations on the dual antiparasitic mechanisms showed the correlation between inhibitory activity of β-hematin formation and antiparasitic activity. Inhibiting hemozoin formation was identified as one of the mechanisms of action of carbazole aminoalcohols. Compound 7 displayed potent antiplasmodial (Pf3D7 IC(50) = 0.248 μM, PfDd2 IC(50) = 0.091 μM) and antischistosomal activities (100% mortality of adult and juvenile schistosomes at 5 and 10 μg/mL, respectively) and exhibited low cytotoxicity (CC(50) = 7.931 μM), which could be considered as a promising lead for further investigation. Stoichiometry determination and molecular docking studies were also performed to explain the mode of action of compound 7.
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spelling pubmed-53848862017-04-14 Novel carbazole aminoalcohols as inhibitors of β-hematin formation: Antiplasmodial and antischistosomal activities Wang, Weisi Li, Qiang Wei, Yufen Xue, Jian Sun, Xiao Yu, Yang Chen, Zhuo Li, Shizhu Duan, Liping Int J Parasitol Drugs Drug Resist Article Malaria and schistosomiasis are two of the most socioeconomically devastating parasitic diseases in tropical and subtropical countries. Since current chemotherapeutic options are limited and defective, there is an urgent need to develop novel antiplasmodials and antischistosomals. Hemozoin is a disposal product formed from the hemoglobin digestion by some blood-feeding parasites. Hemozoin formation is an essential process for the parasites to detoxify free heme, which is a reliable therapeutic target for identifying novel antiparasitic agents. A series of novel carbazole aminoalcohols were designed and synthesized as potential antiplasmodial and antischistosomal agents, and several compounds showed potent in vitro activities against Plasmodium falciparum 3D7 and Dd2 strains and adult and juvenile Schistosoma japonicum. Investigations on the dual antiparasitic mechanisms showed the correlation between inhibitory activity of β-hematin formation and antiparasitic activity. Inhibiting hemozoin formation was identified as one of the mechanisms of action of carbazole aminoalcohols. Compound 7 displayed potent antiplasmodial (Pf3D7 IC(50) = 0.248 μM, PfDd2 IC(50) = 0.091 μM) and antischistosomal activities (100% mortality of adult and juvenile schistosomes at 5 and 10 μg/mL, respectively) and exhibited low cytotoxicity (CC(50) = 7.931 μM), which could be considered as a promising lead for further investigation. Stoichiometry determination and molecular docking studies were also performed to explain the mode of action of compound 7. Elsevier 2017-04-02 /pmc/articles/PMC5384886/ /pubmed/28395189 http://dx.doi.org/10.1016/j.ijpddr.2017.03.007 Text en © 2017 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Wang, Weisi
Li, Qiang
Wei, Yufen
Xue, Jian
Sun, Xiao
Yu, Yang
Chen, Zhuo
Li, Shizhu
Duan, Liping
Novel carbazole aminoalcohols as inhibitors of β-hematin formation: Antiplasmodial and antischistosomal activities
title Novel carbazole aminoalcohols as inhibitors of β-hematin formation: Antiplasmodial and antischistosomal activities
title_full Novel carbazole aminoalcohols as inhibitors of β-hematin formation: Antiplasmodial and antischistosomal activities
title_fullStr Novel carbazole aminoalcohols as inhibitors of β-hematin formation: Antiplasmodial and antischistosomal activities
title_full_unstemmed Novel carbazole aminoalcohols as inhibitors of β-hematin formation: Antiplasmodial and antischistosomal activities
title_short Novel carbazole aminoalcohols as inhibitors of β-hematin formation: Antiplasmodial and antischistosomal activities
title_sort novel carbazole aminoalcohols as inhibitors of β-hematin formation: antiplasmodial and antischistosomal activities
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5384886/
https://www.ncbi.nlm.nih.gov/pubmed/28395189
http://dx.doi.org/10.1016/j.ijpddr.2017.03.007
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