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Synthesis of Novel Xanthone Analogues and Their Growth Inhibitory Activity Against Human Lung Cancer A549 Cells

机译:对人肺癌A549细胞的新型X原酮类似物的合成及其生长抑制活性

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Purpose: Xanthones demonstrated an array of pharmacological activities via non-covalent DNA interaction and have been widely utilized in new drug research. The introduction of the polar 1,2,3-triazole ring located at the C3-position of xanthone has not been reported thus far. Methods: In the present study, a series of xanthone derivatives were designed, synthesized, and characterized through sup1/supH NMR, sup13/supC NMR, and MS. The methyl thiazolyl tetrazolium method was used to evaluate the cytotoxic activity of compounds. Furthermore, the structure–activity relationship and the potential mechanism of target compounds were investigated. Results: The ICsub50/sub showed that the inhibitory activity of 18 target compounds was higher than that of the original xanthone intermediate 4. In particular, compound 1j was the most active agent against A549 cancer cells (ICsub50/sub = 32.4 ± 2.2 μM). Moreover, apoptosis analysis indicated different contributions of early/late apoptosis to cell death for compounds 1h and 1j. The results of Western blotting analysis showed that compound 1j significantly increased the expression of caspase 3, Bax, and c-Jun N-terminal kinase, and regulated p53 to a better healthy state in cancer cells. Conclusion: We synthesized several derivatives of xanthone and evaluated their cytotoxicity. The evidence suggested that compound 1j possessed greater anticancer potential for further evaluations.
机译:目的:Xanthones通过非共价DNA相互作用展示了一系列药理活性,并被广泛用于新的药物研究。迄今为止,尚未报告位于X原酮的C3位置的极性1,2,3-三唑环。方法:在本研究中,设计了一系列X吨酮衍生物,合成,并通过 1 H nmr, 13-sup> c nmr和Ms。甲基噻唑基四唑鎓法用于评价化合物的细胞毒性活性。此外,研究了结构 - 活性关系和靶化合物的潜在机制。结果:IC 50 表明,18个靶化合物的抑制活性高于原始X蒽中间体4的抑制活性。特别是,化合物1J是针对A549癌细胞的最活性剂(IC 50 = 32.4±2.2μm)。此外,细胞凋亡分析表明,早期/晚期凋亡对化合物1H和1J的细胞死亡的不同贡献。 Western印迹分析结果表明,化合物1J显着增加了Caspase 3,Bax和C-Jun N-末端激酶的表达,并调节P53在癌细胞中更好的健康状态。结论:我们合成了X吨酮的几种衍生物并评估了它们的细胞毒性。证据表明,化合物1J具有更大的抗癌潜力,以进一步评估。

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