Literature DB >> 24203393

Structural design, synthesis and structure-activity relationships of thiazolidinones with enhanced anti-Trypanosoma cruzi activity.

Diogo Rodrigo Magalhães Moreira1, Ana Cristina Lima Leite, Marcos Verissimo Oliveira Cardoso, Rajendra Mohan Srivastava, Marcelo Zaldini Hernandes, Marcelo Montenegro Rabello, Luana Faria da Cruz, Rafaela Salgado Ferreira, Carlos Alberto de Simone, Cássio Santana Meira, Elisalva Teixeira Guimaraes, Aline Caroline da Silva, Thiago André Ramos dos Santos, Valéria Rêgo Alves Pereira, Milena Botelho Pereira Soares.   

Abstract

Pharmacological treatment of Chagas disease is based on benznidazole, which displays poor efficacy when administered during the chronic phase of infection. Therefore, the development of new therapeutic options is needed. This study reports on the structural design and synthesis of a new class of anti-Trypanosoma cruzi thiazolidinones (4 a-p). (2-[2-Phenoxy-1-(4-bromophenyl)ethylidene)hydrazono]-5-ethylthiazolidin-4-one (4 h) and (2-[2-phenoxy-1-(4-phenylphenyl)ethylidene)hydrazono]-5-ethylthiazolidin-4-one (4 l) were the most potent compounds, resulting in reduced epimastigote proliferation and were toxic for trypomastigotes at concentrations below 10 μM, while they did not display host cell toxicity up to 200 μM. Thiazolidinone 4 h was able to reduce the in vitro parasite burden and the blood parasitemia in mice with similar potency to benznidazole. More importantly, T. cruzi infection reduction was achieved without exhibiting mouse toxicity. Regarding the molecular mechanism of action, these thiazolidinones did not inhibit cruzain activity, which is the major trypanosomal protease. However, investigating the cellular mechanism of action, thiazolidinones altered Golgi complex and endoplasmic reticulum (ER) morphology, produced atypical cytosolic vacuoles, as well as induced necrotic parasite death. This structural design employed for the new anti-T. cruzi thiazolidinones (4 a-p) led to the identification of compounds with enhanced potency and selectivity compared to first-generation thiazolidinones. These compounds did not inhibit cruzain activity, but exhibited strong antiparasitic activity by acting as parasiticidal agents and inducing a necrotic parasite cell death.
Copyright © 2014 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  Trypanosoma cruzi; antiprotozoal agents; biological activity; hydrazones; medicinal chemistry; thiazolidinones

Mesh:

Substances:

Year:  2013        PMID: 24203393     DOI: 10.1002/cmdc.201300354

Source DB:  PubMed          Journal:  ChemMedChem        ISSN: 1860-7179            Impact factor:   3.466


  4 in total

1.  Novel Non-Peptide Inhibitors against SmCL1 of Schistosoma mansoni: In Silico Elucidation, Implications and Evaluation via Knowledge Based Drug Discovery.

Authors:  Atif Zafar; Sabahuddin Ahmad; Asim Rizvi; Masood Ahmad
Journal:  PLoS One       Date:  2015-05-01       Impact factor: 3.240

2.  The design, synthesis, and in vitro trypanocidal and leishmanicidal activities of 1,3-thiazole and 4-thiazolidinone ester derivatives.

Authors:  Muhammad Haroon; Mabilly Cox Holanda de Barros Dias; Aline Caroline da Silva Santos; Valéria Rêgo Alves Pereira; Luiz Alberto Barros Freitas; Rodolfo Bento Balbinot; Vanessa Kaplum; Celso Vataru Nakamura; Luiz Carlos Alves; Fábio André Brayner; Ana Cristina Lima Leite; Tashfeen Akhtar
Journal:  RSC Adv       Date:  2021-01-11       Impact factor: 3.361

3.  A Perspective on Thiazolidinone Scaffold Development as a New Therapeutic Strategy for Toxoplasmosis.

Authors:  Cristian Rocha-Roa; Diego Molina; Néstor Cardona
Journal:  Front Cell Infect Microbiol       Date:  2018-10-16       Impact factor: 5.293

4.  Trypanocidal Activity of Flavanone Derivatives.

Authors:  Gabriela Maciel Diogo; Josimara Souza Andrade; Policarpo Ademar Sales Junior; Silvane Maria Fonseca Murta; Viviane Martins Rebello Dos Santos; Jason Guy Taylor
Journal:  Molecules       Date:  2020-01-17       Impact factor: 4.411

  4 in total

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