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Brine shrimp lethality assay ‘an effective prescreen’: Microwave-assisted synthesis, BSL toxicity and 3DQSAR studies-based designing, docking and antitumor evaluation of potent chalcones

机译:盐水虾致死率测定“有效的预筛”:微波辅助合成,BSL毒性和基于3DQSAR研究的强效查耳酮设计,对接和抗肿瘤评估

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Context: In the course of searching potential antitumor agents from a library of chalcones synthesized under microwave irradiations, the brine shrimp lethality (BSL) assay and a 3D structure–activity relationship (3DQSAR) studies were followed by the antitumor evaluation of most potent analogues. Objective: The objective of the current study was to effectively use the BSL assay for the identification of potential cytotoxic analogues from a set of compounds. Methods: We applied the comparative molecular field analysis (CoMFA) and devised 3DQSAR on 33 synthesized chalcones leading to prediction of five related compounds with improved activity. The scope of BSL assay for the prediction of antitumor potency was tested through the in vitro antitumor studies against six human tumor cell-lines, docking studies and the tubulin-polymerization assay. Results: The newly designed compounds 34–38 displayed very promising cytotoxic potency. From our results, the BSL toxicity, antitumor efficacy and docking outcomes could be easily co-related. Conclusion: The study draws a very good relationship between a simple, inexpensive, and bench-top BSL assay and the antitumor potential of the cytotoxic compounds. Devising the CoMFA analysis helped in designing chalcones with improved cytotoxic potential as displayed through their BSL and cytotoxic activity against human tumor cell lines. The studies are noteworthy as such comprehensive studies were never performed before on the BSL assay. The present studies widen the scope of the BSL model that may prove quite helpful as a preliminary screen in the antitumor drug designing and synthesis expeditions.
机译:背景:在从微波辐照合成的查耳酮文库中搜索潜在的抗肿瘤药物的过程中,盐水虾致死性(BSL)分析和3D结构-活性关系(3DQSAR)研究随后是对大多数有效类似物的抗肿瘤评估。目的:本研究的目的是有效地利用BSL分析法从一组化合物中鉴定潜在的细胞毒性类似物。方法:我们应用了比较分子场分析(CoMFA),并在33个合成的查耳酮上设计了3DQSAR,从而预测了五种相关化合物的活性得到改善。通过针对六种人类肿瘤细胞系的体外抗肿瘤研究,对接研究和微管蛋白聚合试验,测试了用于预测抗肿瘤效力的BSL分析的范围。结果:新设计的化合物34-38显示出非常有希望的细胞毒性潜能。根据我们的结果,BSL毒性,抗肿瘤功效和对接结果可能很容易相互关联。结论:该研究在简单,廉价且台式BSL测定与细胞毒性化合物的抗肿瘤潜力之间建立了很好的联系。设计CoMFA分析有助于设计查耳酮,如通过其BSL和对人肿瘤细胞系的细胞毒活性所显示的那样,具有改善的细胞毒性潜力。这些研究值得注意,因为以前从未在BSL分析中进行过这样的全面研究。目前的研究拓宽了BSL模型的范围,该模型可能被证明在抗肿瘤药物设计和合成研究中作为初步筛选非常有帮助。

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