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Synthesis of unsymmetrical disulfanes bearing 1,2,4-triazine scaffold and their in vitro screening towards anti-breast cancer activity

机译:非对称二丁烯含有1,2,4-三嗪支架及其对抗乳腺癌活性的体外筛选的非对称硫胺

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A new series of 1,2,4-triazine unsymmetrical disulfanes were prepared and evaluated as anticancer activity compounds against MCF-7 human breast cancer cells with some of them acting as low micromolar inhibitors. Evaluation of the cytotoxicity using an MTT assay, the inhibition of [H-3]-thymidine incorporation into DNA demonstrated that these products exhibit cytotoxic effects on breast cancer cells in vitro. The most effective compounds with 59 and 60 A mu M compared to chlorambucil with 47 A mu M were disulfanes bearing methyl and methoxy substituent in an aromatic ring. Furthermore, all new 14 compounds were obtained with 22-74% yield via mild and efficient synthesis of the sulfur-sulfur bond formation from thiols and symmetrical disulfanes using 2,3-dichloro-5,6-dicyanobenzoquinone (DDQ). The molecular structure of the newly obtained compounds was confirmed by X-ray analysis. The conformational preferences of disulfide system were characterized using theoretical calculations at DFT level and statistical distributions of C-S-S-C torsion angle values based on the Cambridge Structural Database (CSD). The DFT calculations and CSD searching show two preferential conformations for C-S-S-C torsion angle close to +/- 90A degrees and relatively large freedom of rotation on S-S bond in physiological conditions. The molecular docking studies were performed using the human estrogen receptor alpha (ER alpha) as molecular target to find possible binding orientation and intermolecular interactions of investigated disulfanes within the active site of ER alpha. The SaEuro broken vertical bar H-S and SaEuro broken vertical bar H-C hydrogen bonds between sulfur atoms of bisulfide bridge and S-H and C-H groups of Cys530 and Ala350 as protein residues play crucial role in interaction with estrogen receptor for the most anticancer active disulfane.
机译:制备新系列1,2,4-三嗪不对称二硫化,并评估抗癌活性化合物,其与MCF-7人乳腺癌细胞中的一些作用为低微胆抑制剂。使用MTT测定评估细胞毒性,抑制[H-3] - β-尿甘素掺入DNA中的表明,这些产品在体外对乳腺癌细胞的细胞毒性作用表现出细胞毒性作用。与带有47Aμm的氯镁汞相比,具有59和60 a mu m的最有效化合物是含有甲基和甲氧基取代基的芳香环中的二硫胺。此外,通过使用2,3-二氯-5,6-二氰基醌(DDQ),通过温和的和有效合成来自硫醇和对称二丙醛的硫磺键形成的22-74%的产率,得到所有新的14种化合物。通过X射线分析证实了新获得的化合物的分子结构。基于剑桥结构数据库(CSD)的DFT水平和C-S-C扭转角度值的理论计算,表征二硫化物系统的构象偏好。 DFT计算和CSD搜索显示了接近+/- 90A度的C-S-C-C扭转角的两个优先构象,在生理条件下对S-S键的相对较大的旋转自由度。使用人雌激素受体α(ERα)作为分子靶来进行分子对接研究,以找到ERα的活性位点内所研究的苯脲的可能结合取向和分子间相互作用。 Saeuro破碎的垂直条H-S和Saeuro破碎的垂直条H-C氢键之间的双硫化物桥和S-H和C-H组C-H组和Ala350作为蛋白质残留物在与最多抗癌活性二核与雌激素受体相互作用中起重要作用。

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