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首页> 外文期刊>Journal of Computational Chemistry: Organic, Inorganic, Physical, Biological >Modeling of diarylalkyl-imidazole and diarylalkyl-triazole derivatives as potent aromatase inhibitors for treatment of hormone-dependent cancer
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Modeling of diarylalkyl-imidazole and diarylalkyl-triazole derivatives as potent aromatase inhibitors for treatment of hormone-dependent cancer

机译:二芳基烷基咪唑和二芳基烷基三唑衍生物作为有效的芳香化酶抑制剂治疗激素依赖性癌症的模型

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摘要

Aromatase is an enzyme that catalyzes the final step in the conversion of androgen to estrogen. It has become an attractive target for the treatment of estrogen responsive breast cancer. The study has been focused on designing aromatase inhibitors (AIs) that can. be selected as probable drug candidate for the treatment of breast cancer. In the present study, long chain diarylalkyl-imidazole and -triazole scaffolds have been considered for exploring pharmacophores as potent AIs using QSAR (Quantitative SAR) and pharmacophore mapping studies. The model generated in linear free energy QSAR study (R ~2 = 0.905, Q~2= 0.885, R~2_(pred(ts)) = 0.763) showed the importance of hydrophobicity, size and shape of the molecule, van der Waals surface and hydrogen atom contribution influence the activity. 3D QSAR of comparative molecular field analysis (CoMFA, R~2= 0.921, Q~2 = 0.741, R~2_(pred(ts))= 0.583) showed that steric and electrostatic features along with hydrophobicity and electronic charge contribution at C_4 (Fig. 1) influence on the inhibitory activity. Comparative molecular similarity analysis (CoMSIA, R~2 = 0.874, Q~2 = 0.716, R~2_(pred(ts)) = 0.591) study adjudged the presence of steric, electrostatic and hydrophobic fields together with hydrogen bond (HB) donor and acceptor play significant role in inhibitory activity to aromatase enzyme. Further pharmacophore mapping study (Q~2 = 0.947, Δ_(cost) = 113.171, R~2_(pred(ts)) = 0.857) suggested that presence of HB acceptor, hydrophobicity with aromatic ring, and the importance of steric contribution influence on the activity. The critical distances among the features are also important for the inhibitor activity.
机译:芳香酶是一种催化雄激素向雌激素转化的最终步骤的酶。它已成为治疗雌激素反应性乳腺癌的有吸引力的靶标。这项研究的重点是设计可以的芳香酶抑制剂(AI)。被选为治疗乳腺癌的候选药物。在本研究中,长链二芳基烷基咪唑和-三唑支架已被考虑用于使用QSAR(定量SAR)和药效团作图研究来探索作为有效AI的药效团。在线性自由能QSAR研究中生成的模型(R〜2 = 0.905,Q〜2 = 0.885,R〜2_(pred(ts))= 0.763)表明了疏水性,分子大小和形状,范德华力的重要性表面和氢原子的贡献影响活性。比较分子场分析的3D QSAR(CoMFA,R〜2 = 0.921,Q〜2 = 0.741,R〜2_(pred(ts))= 0.583)显示在C_4处的空间和静电特征以及疏水性和电荷贡献图1)对抑制活性的影响。比较分子相似性分析(CoMSIA,R〜2 = 0.874,Q〜2 = 0.716,R〜2_(pred(ts))= 0.591)研究确定了空间,静电和疏水场以及氢键(HB)供体的存在受体在芳香酶的抑制活性中起重要作用。进一步的药效团作图研究(Q〜2 = 0.947,Δ_(cost)= 113.171,R〜2_(pred(ts))= 0.857)表明HB受体的存在,带有芳香环的疏水性以及空间贡献的重要性对活动。特征之间的临界距离对于抑制剂的活性也很重要。

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