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Published on: June 20, 2014
BHT-derived thiazolidin-4-ones: synthesis, radical scavenging activity, and in silico evaluation
Melinda Gomes Victor1, Bruna Caetano Moreira1, Cinara Teiroba de Ávila1
1Laboratory of Chemistry Applied to Bioactives (LaQuiABio), Center for Chemical, Pharmaceutical and Food Sciences, Federal University of Pelotas Building No. 32, Laboratory No. 410, University Campus No. Capão do Leão RS CEP 96160-000 Brazil wjcunico@yahoo.com.br.
Abstract:
Butylated hydroxytoluene (BHT) is a recognized antioxidant, while thiazolidin-4-ones are versatile scaffolds for bioactive molecule design. Here, BHT-functionalized thiazolidin-4-ones were synthesized with systematic variation at the N-3 position. Multicomponent synthetic strategies afforded thiazolidin-4-ones (4), a pyrazolo-thiazepinone derivative (5m), and a 1,2,3-triazole hybrid (7k). Antioxidant activity was evaluated using DPPH˙ and ABTS˙+ radical-scavenging assays and rat brain homogenates assessing ROS, nitrite, TBARS, and thiol levels. Compound 4d showed the strongest chemical radical-scavenging activity, while 4a and 4b were particularly active in the ABTS˙+ assay. Compound 4h showed intermediate chemical activity but also demonstrated biological effects. In conclusion, N-3 substitution modulated both chemical and biological antioxidant responses, and chemical radical-scavenging potency did not fully predict activity in the biological oxidative-stress model. Docking results showed no clear correlation with the experimental findings.
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