Literature DB >> 35217378

Design, synthesis, and biological evaluation of thiazole bioisosteres of goniofufurone through in vitro antiproliferative activity and in vivo toxicity.

Miloš Svirčev1, Mirjana Popsavin2, Aleksandar Pavić3, Branka Vasiljević3, Marko V Rodić1, Sanja Djokić1, Jelena Kesić1, Bojana Srećo Zelenović1, Velimir Popsavin4, Vesna Kojić5.   

Abstract

The synthesis of several new goniofufurone bioisosteres was achieved in which the phenyl residue was replaced by a thiazole ring. The key steps of the synthesis included the initial condensation of cyanohydrin benzoates with cysteine ethyl ester hydrochloride, followed by the subsequent reaction of resulting C-4' epimeric thiazolines with DBU, to introduce 5-deoxy functionality and to elaborate the thiazole ring in one step. Synthesized compounds showed potent growth inhibitory effects against selected human tumour cell lines, especially bioisostere 4, which in the culture of MCF-7 cells displayed the highest activity (IC50 = 0.19 nM) of all compounds under evaluation. This molecule exhibited 64474-fold higher antiproliferative activity than lead 2 and was1053-fold more active than the commercial antitumour agent doxorubicin in the culture of MCF-7 cells. The structural features of the tested compounds responsible for their antiproliferative activity have been identified by preliminary SAR analysis. The toxicity of the most active compound 4 was assessed by an in vivo experiment in a zebrafish model (Danio rerio), whereupon it was found non-toxic at any of the tested concentrations up to 125 μM.
Copyright © 2022 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Goniofufurone; In vivo toxicity; MTT assay; SAR; Thiazole bioisosteres; Zebrafish model

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Year:  2022        PMID: 35217378     DOI: 10.1016/j.bioorg.2022.105691

Source DB:  PubMed          Journal:  Bioorg Chem        ISSN: 0045-2068            Impact factor:   5.275


  1 in total

1.  New Thiazole Acetic Acid Derivatives: A Study to Screen Cardiovascular Activity Using Isolated Rat Hearts and Blood Vessels.

Authors:  P Raghunatha; Mohammed Naseeruddin Inamdar; Syed Mohammed Basheeruddin Asdaq; Mansour Almuqbil; Abdullah R Alzahrani; Saleh I Alaqel; Mehnaz Kamal; Firas Hamdan Alsubaie; Walaa F Alsanie; Abdulhakeem S Alamri; Syed Imam Rabbani; Mahesh Attimarad; S Mohan; Majid Alhomrani
Journal:  Molecules       Date:  2022-09-20       Impact factor: 4.927

  1 in total

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