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单酰基和二酰基咪唑烷-2-硫酮衍生物的合成、细胞毒性评价及计算研究。

Mono- and di-acylated imidazolidine-2-thione derivatives: synthesis, cytotoxicity evaluation and computational studies.

机构信息

Department of Pharmacy, University of Genova, viale Benedetto XV, 3, 16132, Genoa, Italy.

IIT, Via Morego 30, 16163, Genoa, Italy.

出版信息

Mol Divers. 2023 Jun;27(3):1285-1295. doi: 10.1007/s11030-022-10487-5. Epub 2022 Jul 22.

Abstract

Imidazolidine-2-thione substructure represents a pharmaceutically attractive scaffold, being included in different antimicrobial, anticancer and pesticide agents. To further evaluate the pharmaceutical potential of this chemical moiety, imidazolidine-2-thione was reacted with atypical Vilsmeier adducts, obtained by the condensation between dimethylacetamide and various acyl chlorides endowed with different electronic and steric properties. The formation of mono-acylated or di-acylated thiourea derivatives emerged to be affected by the nature of the considered acyl chloride reagent. Computational semi-empirical simulations were carried out to rationalize the relevant factor influencing the outcome of the reaction. As acylthioureas are pharmacologically relevant compounds, the chemical versatility of mono-acylated derivatives were evaluated by reacting benzoyl imidazolidin-2-thione with acyl chlorides. A small library of asymmetric di-acylthioureas was prepared and the obtained derivatives did not show any cytotoxicity on SKOV-3 and MCF-7 cancer cell lines. Additionally, in silico studies predicted good pharmacokinetics properties and promising drug-like characteristics for mono- and di-acylated thioureas. These considerations further support the value of the prepared compounds as interesting non-cytotoxic chemical scaffold useful in the medicinal chemistry field.

摘要

咪唑烷-2-硫酮结构代表了一种具有吸引力的药物化学结构骨架,存在于多种抗菌、抗癌和杀虫剂药物中。为了进一步评估该化学结构部分的药物潜力,将咪唑烷-2-硫酮与非典型的 Vilsmeier 加合物反应,这些加合物是通过二甲基乙酰胺与具有不同电子和空间性质的各种酰氯缩合得到的。单酰化或二酰化硫脲衍生物的形成似乎受到所考虑的酰氯试剂性质的影响。通过半经验的计算模拟来合理化影响反应结果的相关因素。由于酰基硫脲是具有药理相关性的化合物,因此通过将苯甲酰基咪唑烷-2-硫酮与酰氯反应来评估单酰化衍生物的化学多功能性。合成了一个小的不对称二酰基硫脲库,得到的衍生物对 SKOV-3 和 MCF-7 癌细胞系没有显示出任何细胞毒性。此外,计算研究预测单酰基和二酰基硫脲具有良好的药代动力学特性和有前景的类药性特征。这些考虑进一步支持了所制备的化合物作为有价值的非细胞毒性化学骨架,可用于药物化学领域。

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