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Synthesis, Biological Activities, and Quantitative Structure-Activity Relationship (QSAR) Study of Novel Camptothecin Analogues

机译:喜树碱类似物的合成,生物活性和定量构效关系(QSAR)研究

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摘要

In continuation of our program aimed at the development of natural product-based pesticidal agents, three series of novel camptothecin derivatives were designed, synthesized, and evaluated for their biological activities against T. Cinnabarinus, B. brassicae, and B. xylophilus. All of the derivatives showed good-to-excellent activity against three insect species tested, with LC50 values ranging from 0.00761 to 0.35496 mmol/L. Remarkably, all of the compounds were more potent than CPT against T. Cinnabarinus, and compounds 4d and 4c displayed superior activity (LC50 0.00761 mmol/L and 0.00942 mmol/L, respectively) compared with CPT (LC50 0.19719 mmol/L) against T. Cinnabarinus. Based on the observed bioactivities, preliminary structure-activity relationship (SAR) correlations were also discussed. Furthermore, a three-dimensional quantitative structure-activity relationship (3D-QSAR) model using comparative molecular field analysis (CoMFA) was built. The model gave statistically significant results with the cross-validated q(2) values of 0.580 and correlation coefficient r(2) of 0.991 and r(pred)(2) of 0.993. The QSAR analysis indicated that the size of the substituents play an important in the activity of 7-modified camptothecin derivatives. These findings will pave the way for further design, structural optimization, and development of camptothecin-derived compounds as pesticidal agents.
机译:在我们继续致力于开发基于天然产物的杀虫剂的计划的过程中,设计,合成并评估了三个系列的喜树碱新型衍生物,它们对丁香,芸苔小球藻和嗜木小球藻具有生物活性。所有衍生物均对三种被测昆虫表现出良好至优异的活性,LC50值为0.00761至0.35496 mmol / L。值得注意的是,所有化合物均比CPT更具有抵抗T.Cinnabarinus的功效,并且化合物4d和4c与CPT(LC50具有0.19719 mmol / L)相比,具有更强的活性(LC50为0.00761 mmol / L和0.00942 mmol / L)。朱砂基于观察到的生物活性,还讨论了初步的结构-活性关系(SAR)相关性。此外,使用比较分子场分析(CoMFA)建立了三维定量构效关系(3D-QSAR)模型。该模型给出了具有统计学意义的结果,其中交叉验证的q(2)值为0.580,相关系数r(2)为0.991,r(pred)(2)为0.993。 QSAR分析表明,取代基的大小在7-修饰的喜树碱衍生物的活性中起重要作用。这些发现将为进一步设计,优化结构和开发喜树碱衍生的化合物作为杀虫剂铺平道路。

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