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Synthesis Docking Studies and Biological Activity of New Benzimidazole- Triazolothiadiazine Derivatives as Aromatase Inhibitor

机译:新型苯并咪唑-三唑并噻二嗪衍生物作为芳香酶抑制剂的合成对接研究及其生物活性

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摘要

In the last step of estrogen biosynthesis, aromatase enzyme catalyzes the conversion of androgens to estrogens. Aromatase inhibition is an important way to control estrogen-related diseases and estrogen levels. In this study, sixteen of benzimidazole-triazolothiadiazine derivatives have been synthesized and studied as potent aromatase inhibitors. First, these compounds were tested for their anti-cancer properties against human breast cancer cell line (MCF-7). The most active compounds , , , and on MCF-7 cell line were subject to further in vitro aromatase enzyme inhibition assays to determine the possible mechanisms of action underlying their activity. Compound showed slight less potent aromatase inhibitory activity than that of letrozole with IC = 0.032 ± 0.042 µM, compared to IC = 0.024 ± 0.001 µM for letrozole. Furthermore, compound and reference drug letrozole were docked into human placental aromatase enzyme to predict their possible binding modes with the enzyme. Finally, ADME parameters (absorption, distribution, metabolism, and excretion) of synthesized compounds ( – ) were calculated by QikProp 4.8 software.
机译:在雌激素生物合成的最后一步中,芳香化酶催化雄激素向雌激素的转化。芳香酶抑制是控制雌激素相关疾病和雌激素水平的重要方法。在这项研究中,已经合成并研究了十六种苯并咪唑-三唑并噻二嗪衍生物作为有效的芳香化酶抑制剂。首先,测试这些化合物对人乳腺癌细胞系(MCF-7)的抗癌特性。对MCF-7细胞系上最具活性的化合物,和进行进一步的体外芳香化酶抑制试验,以确定其活性的潜在作用机制。与IC值为0.032±0.042 µM的来曲唑相比,该化合物对来曲唑的香精酶抑制活性稍弱。此外,将化合物和参考药物来曲唑对接至人胎盘芳香酶中,以预测它们与该酶的可能结合方式。最后,通过QikProp 4.8软件计算合成化合物(–)的ADME参数(吸收,分布,代谢和排泄)。

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