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新型唑-5(4)-酮和三嗪-6(5)-酮杂环化合物的合成、表征及毒性评价。

New Heterocyclic Compounds from Oxazol-5(4)-one and 1,2,4-Triazin-6(5)-one Classes: Synthesis, Characterization and Toxicity Evaluation.

机构信息

Department of Organic Chemistry, Faculty of Pharmacy, "Carol Davila" University of Medicine and Pharmacy, 6 Traian Vuia Street, 020956 Bucharest, Romania.

"C. D. Nenitescu" Institute of Organic and Supramolecular Chemistry Romanian Academy, 202B Splaiul Independenței, 060023 Bucharest, Romania.

出版信息

Molecules. 2023 Jun 17;28(12):4834. doi: 10.3390/molecules28124834.

Abstract

This paper describes the synthesis of new heterocycles from oxazol-5(4)-one and 1,2,4-triazin-6(5)-one classes containing a phenyl-/4-bromophenylsulfonylphenyl moiety. The oxazol-5(4)-ones were obtained via condensation of 2-(4-(4-X-phenylsulfonyl)benzamido)acetic acids with benzaldehyde/4-fluorobenzaldehyde in acetic anhydride and in the presence of sodium acetate. The reaction of oxazolones with phenylhydrazine, in acetic acid and sodium acetate, yielded the corresponding 1,2,4-triazin-6(5)-ones. The structures of the compounds were confirmed using spectral (FT-IR, H-NMR, C-NMR, MS) and elemental analysis. The toxicity of the compounds was evaluated on Straus crustaceans and on the budding yeast . The results indicate that both the heterocyclic nucleus and halogen atoms significantly influenced the toxicity against , with the oxazolones being less toxic than triazinones. The halogen-free oxazolone had the lowest toxicity, and the fluorine-containing triazinone exhibited the highest toxicity. The compounds showed low toxicity against yeast cells, apparently due to the activity of plasma membrane multidrug transporters Pdr5 and Snq2. The predictive analyses indicated an antiproliferative effect as the most probable biological action. The PASS prediction and CHEMBL similarity studies show evidence that the compounds could inhibit certain relevant oncological protein kinases. These results correlated with toxicity assays suggest that halogen-free oxazolone could be a good candidate for future anticancer investigations.

摘要

本文描述了含苯磺酰基/4-溴苯磺酰基苯基部分的噁唑-5(4)-酮和 1,2,4-三嗪-6(5)-酮类新杂环的合成。噁唑-5(4)-酮是通过 2-(4-(4-X-苯磺酰基)苯甲酰胺基)乙酸与苯甲醛/4-氟苯甲醛在醋酸酐中和醋酸钠存在下缩合得到的。噁唑啉与苯肼在醋酸和醋酸钠中反应得到相应的 1,2,4-三嗪-6(5)-酮。利用光谱(FT-IR、H-NMR、C-NMR、MS)和元素分析确认了化合物的结构。采用 Straus 甲壳动物和 budding 酵母评价了化合物的毒性。结果表明,杂环核和卤素原子都显著影响了对 Straus 甲壳动物的毒性,噁唑啉的毒性低于三嗪酮。无卤素的噁唑啉毒性最低,含氟的三嗪酮毒性最高。这些化合物对酵母细胞的毒性较低,这显然是由于质膜多药转运蛋白 Pdr5 和 Snq2 的活性。预测分析表明,作为最可能的生物作用,具有抗增殖作用。PASS 预测和 CHEMBL 相似性研究表明,这些化合物可能抑制某些相关的肿瘤蛋白激酶。这些结果与毒性试验相关表明,无卤素的噁唑啉可能是未来抗癌研究的良好候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1a5/10302834/ae194fe656c5/molecules-28-04834-g001.jpg

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