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Thiazoles with cyclopropyl fragment as antifungal, anticonvulsant, and anti- Toxoplasma gondii agents: synthesis, toxicity evaluation, and molecular docking study

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TLDR
Thiazoles 3a, 3h, and 3j showed significant anti-Toxoplasma gondii activity, with IC50 values 31–52 times lower than those observed for sulfadiazine, which indicated secreted aspartic proteinase (SAP) as possible antifungal target.
Abstract
Synthesis and investigation of antifungal, anticonvulsant and anti-Toxoplasma gondii activities of ten novel (2-(cyclopropylmethylidene)hydrazinyl)thiazole 3a–3j are presented. Among the derivatives, compounds 3a–3d and 3f–3j possess very high activity against Candida spp. ATCC with MIC = 0.015–7.81 µg/ml. Compounds 3a–3d and 3f–3j possess also very high activity towards most of strains of Candida spp. isolated from clinical materials with MIC = 0.015–7.81 µg/ml. The activity of these compounds is similar and even higher than the activity of nystatin used as positive control. Additionally, compounds 3c and 3e showed interesting anticonvulsant activities in the MES test, whereas compounds 3f and 3i demonstrated the anticonvulsant activity in PTZ-induced seizures. Noteworthy, none of these compounds impaired animals’ motor skills in the rotarod test. Moreover, thiazoles 3a, 3h, and 3j showed significant anti-Toxoplasma gondii activity, with IC50 values 31–52 times lower than those observed for sulfadiazine. The results of the cytotoxicity evaluation, anti-Candida spp. and anti-Toxoplasma gondii activity studies showed that Candida spp. and Toxoplasma gondii growth was inhibited at non-cytotoxic concentrations for the mouse L929 fibroblast and the African green monkey kidney (VERO) cells. Molecular docking studies indicated secreted aspartic proteinase (SAP) as possible antifungal target.

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Thiazole Ring-A Biologically Active Scaffold.

TL;DR: A literature survey regarding the topics from the year 2015 up to now was carried out as mentioned in this paper, where nearly 124 research articles were found, critically analyzed, and arranged regarding the synthesis and biological activities of thiazoles derivatives in the last 5 years.
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A comprehensive overview of the medicinal chemistry of antifungal drugs: perspectives and promise.

TL;DR: This review endeavors to provide an introduction to a growing and increasingly important literature, including coverage of the new developments in medicinal chemistry since 2015, and also endeavors to spark the curiosity of investigators who might enter this fascinatingly complex fungal landscape.
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Review of the synthesis and biological activity of thiazoles

TL;DR: In this article, the literature documents available on the chemistry of preparation of thiazoles are reviewed and the biological activities of certain thiazole species are discussed. And the information of several...
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Benzo[b]thiophene-thiazoles as potent anti-Toxoplasma gondii agents: Design, synthesis, tyrosinase/tyrosine hydroxylase inhibitors, molecular docking study, and antioxidant activity

TL;DR: The results of the cytotoxicity evaluation showed that Toxoplasma gondii growth was inhibited at non-cytotoxic concentrations for the mammalian L929 fibroblast, and the most active compound 3k showed tyrosinase inhibition effect, with IC50 value of 328.5 μM.
References
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TL;DR: A test of FLEXX, a fully automatic docking tool for flexible ligands, on a highly diverse data set of 200 protein–ligand complexes from the Protein Data Bank, finds that 46.5% of the complexes of the data set can be reproduced by a FLE XX docking solution at rank 1 with an rms deviation from the observed structure.
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