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首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >Possible anticancer agents: QSAR analogs of glutamamide: synthesis and pharmacological activity of 1,5-N,N'-disubstituted-2-(substituted benzenesulphonyl) glutamamides.
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Possible anticancer agents: QSAR analogs of glutamamide: synthesis and pharmacological activity of 1,5-N,N'-disubstituted-2-(substituted benzenesulphonyl) glutamamides.

机译:可能的抗癌药:谷氨酰胺的QSAR类似物:1,5-N,N'-二取代-2-(取代的苯磺酰基)谷氨酰胺的合成和药理活性。

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摘要

Based on our earlier QSAR prediction, a series of designed QSAR analogs of 1,5-N,N'-disubstituted-2-(substituted benzenesulphonyl) glutamamides were synthesized as possible anticancer agents. Inhibitions of tumor cell proliferation of the compounds were tested in tumor cell line IMR-32. Anticancer activities of these compounds were also evaluated on Swiss Albino mice against Ehrlich Ascites Carcinoma (EAC) cells. Tumor weight inhibition and tumor cell inhibition were considered as anticancer activity parameters. QSAR analysis of these compounds was performed on the basis of a set of descriptors like physicochemical, topological, quantum chemical and DRAGON whole molecular descriptors. The study showed that the increase of length of substituent at R(2) position and the increase of dipole moment of the molecule decrease the anticancer activity of these compounds, presence of bromine atom at R(3) position and hydrophilic substitution at R(2) position are advantageous to the activity. Nucleophilic attack at atom number 14 is advantageous and electrophilic attack at atom number 15 is detrimental to anticancer activity. Atom number 2 is important and may be involved in dispersive interactions of the compounds with enzymes. The results offer an opportunity for further tailoring of these analogs for an active member.
机译:根据我们较早的QSAR预测,合成了一系列设计的1,5-N,N'-二取代-2-(取代的苯磺酰基)谷氨酰胺的QSAR类似物作为可能的抗癌药。在肿瘤细胞系IMR-32中测试了化合物对肿瘤细胞增殖的抑制作用。还对瑞士白化病小鼠评估了这些化合物对艾氏腹水癌(EAC)细胞的抗癌活性。肿瘤重量抑制和肿瘤细胞抑制被认为是抗癌活性参数。这些化合物的QSAR分析是根据一组描述符进行的,如物理化学,拓扑,量子化学和DRAGON全分子描述符。研究表明,R(2)位置取代基长度的增加和分子偶极矩的增加会降低这些化合物的抗癌活性,R(3)位置处存在溴原子以及R(2)处的亲水取代)位置对活动有利。原子序数为14的亲核攻击是有利的,原子序数为15的亲电子攻击对抗癌活性有害。 2号原子很重要,可能与化合物与酶的分散相互作用有关。结果为进一步为活跃成员定制这些类似物提供了机会。

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