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Synthesis molecular docking ctDNA interaction DFT calculation and evaluation of antiproliferative and anti-Toxoplasma gondii activities of 24-diaminotriazine-thiazole derivatives

机译:24-二氨基三嗪-噻唑衍生物的合成分子对接ctDNA相互作用DFT计算和对弓形虫抗增殖和抗弓形虫活性的评估

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摘要

Synthesis, characterization, and investigation of antiproliferative activities against human cancer cell lines (MV4-11, MCF-7, and A549) and Toxoplasma gondii parasite of twelve novel 2,4-diaminotriazine-thiazoles are presented. The toxicity of the compounds was studied at three different cell types, normal mouse fibroblast (Balb/3T3), mouse fibroblast (L929), and human VERO cells. The structures of novel compounds were determined using 1H and 13C NMR, FAB(+)-MS, and elemental analyses. Among the derivatives, >4a–>k showed very high activity against MV4-11 cell line with IC50 values between 1.13 and 3.21 µg/ml. Additionally, the cytotoxic activity of compounds >4a–>k against normal mouse fibroblast Balb/3T3 cells is about 20–100 times lower than against cancer cell lines. According to our results, compounds >4a, >4b, >4d, and >4i have very strong activity against human breast carcinoma MCF-7, with IC50 values from 3.18 to 4.28 µg/ml. Moreover, diaminotriazines >4a–>l showed significant anti-Toxoplasma gondii activity, with IC50 values 9–68 times lower than those observed for sulfadiazine. Molecular docking studies indicated DNA-binding site of hTopoI and hTopoII as possible anticancer targets and purine nucleoside phosphorylase as possible anti-toxoplasmosis target. Our UV–Vis spectroscopic results indicate also that diaminotriazine-thiazoles tends to interact with DNA by intercalation. Additionally, the structure and the interaction and binding energies of a model complex formed by compound >4a and two thymine molecules are investigated using quantum mechanical methods.
机译:合成,表征和抗增殖活性针对人类癌细胞系(MV4-11,MCF-7和A549)和弓形虫的十二种新型2,4-二氨基三嗪-噻唑的寄生虫的研究。在三种不同的细胞类型(正常小鼠成纤维细胞(Balb / 3T3),小鼠成纤维细胞(L929)和人VERO细胞)上研究了该化合物的毒性。使用 1 H和 13 C NMR,FAB(+)-MS和元素分析确定了新化合物的结构。在这些衍生物中,> 4a – > k 对MV4-11细胞系表现出很高的活性,IC50值在1.13至3.21μg/ ml之间。此外,化合物> 4a – > k 对正常小鼠成纤维Balb / 3T3细胞的细胞毒性活性比对癌细胞系的毒性低约20-100倍。根据我们的结果,化合物> 4a ,> 4b ,> 4d 和> 4i 对人乳腺癌具有非常强的活性MCF-7,IC50值为3.18至4.28µg / ml。此外,二氨基三嗪类药物> 4a -> l 具有明显的抗弓形虫活性,IC50值比磺胺嘧啶低约9–68倍。分子对接研究表明hTopoI和hTopoII的DNA结合位点是可能的抗癌靶标,而嘌呤核苷磷酸化酶是可能的抗弓形虫病靶标。我们的UV-Vis光谱结果还表明,二氨基三嗪-噻唑倾向于通过嵌入与DNA相互作用。此外,使用量子力学方法研究了由化合物> 4a 和两个胸腺嘧啶分子形成的模型配合物的结构,相互作用和结合能。

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