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Assessment of DNA Topoisomerase I Unwinding Activity Radical Scavenging Capacity and Inhibition of Breast Cancer Cell Viability of N-alkyl-acridones and NN′-dialkyl-99′-biacridylidenes

机译:DNA拓扑异构酶I展开活性自由基清除能力和N-烷基-啶酮和NN-dialk-99-biacridylidenes对乳腺癌细胞活力的抑制作用的评估

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摘要

The anticancer activity of acridone derivatives has attracted increasing interest, therefore, a variety of substituted analogs belonging to this family have been developed and evaluated for their anti-cancer properties. A series of N-alkyl-acridones >1–>6 and N,N′-dialkyl-9,9′-biacridylidenes >7–>12 with variable alkyl chains were examined for their topoisomerase I activity at neutral and acidic conditions as well as for their binding capacity to calf thymus and possible radical trapping antioxidant activity. It was found that at a neutral pH, topoisomerase I activity of both classes of compounds was similar, while under acidic conditions, enhanced intercalation was observed. N-alkyl-acridone derivatives >1–>6 exhibited stronger, dose-dependent, cytotoxic activity against MCF-7 human breast epithelial cancer cells than N,N′-dialkyl-9,9′-biacridylidenes >7–>12, revealing that conjugation of the heteroaromatic system plays a significant role on the effective distribution of the compound in the intracellular environment. Cellular investigation of long alkyl derivatives against cell migration exhibited 40–50% wound healing effects and cytoplasm diffusion, while compounds with shorter alkyl chains were accumulated both in the nucleus and cytoplasm. All N,N′-dialkyl-9,9′-biacridylidenes showed unexpected high scavenging activity towards DPPH or ABTS radicals which may be explained by higher stabilization of radical cations by the extended conjugation of heteroaromatic ring system.
机译:cri啶酮衍生物的抗癌活性引起了越来越多的兴趣,因此,已经开发了多种属于该家族的取代类似物,并对其抗癌性能进行了评估。一系列N-烷基-啶酮> 1 – > 6 和N,N'-二烷基-9,9'-双bia啶酮> 7 -检测了具有可变烷基链的> 12 分子在中性和酸性条件下的拓扑异构酶I活性,以及​​它们与小牛胸腺的结合能力以及可能的自由基捕获抗氧化剂活性。发现在中性pH下,两类化合物的拓扑异构酶I活性相似,而在酸性条件下,观察到插层增强。 N-烷基-啶酮衍生物> 1 – > 6 对MCF-7人乳腺上皮癌细胞表现出比N,N'-二烷基-9更强的剂量依赖性细胞毒性活性,9'-双cri啶类化合物> 7 – > 12 ,表明杂芳族系统的共轭对化合物在细胞内环境中的有效分布起着重要作用。长链烷基衍生物对细胞迁移的细胞研究显示出40-50%的伤口愈合作用和细胞质扩散,而烷基链较短的化合物则同时在细胞核和细胞质中积累。所有的N,N'-二烷基-9,9'-双环丙烯都对DPPH或ABTS自由基表现出出乎意料的高清除活性,这可以通过杂芳族环系统的扩展共轭对自由基阳离子的更高稳定性来解释。

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