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首页> 外文期刊>Archives of Biochemistry and Biophysics >Structure-activity relationships of flavonoid-induced cytotoxicity on human leukemia cells
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Structure-activity relationships of flavonoid-induced cytotoxicity on human leukemia cells

机译:类黄酮诱导的人白血病细胞毒性的构效关系

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摘要

The aim of this study was to identify structure elements in flavonoids that are associated with enhanced cytotoxic activity. We determined the cytotoxicity (EC50) of 23 different flavonoids, including O-methylated and glucuronidated metabolites, on the human leukemia cell line Jurkat E6-1 by analyzing cell death triggered after 24 and 48 h. By comparing the cytotoxicity of selected molecules that differ in only one structure element, we identified several structure-function relationships associated with enhanced cytotoxicity, including the presence of a 2-3 double bond, the presence of a 4-carbonyl group and ortho- compared to meta-hydroxylation in the B ring. Molecules with a 3-hydroxyl group exhibited significantly lower cytotoxicity than their non-hydroxylated counterparts. O-Methylation and glucuronidation were associated with a significant increase in cytotoxicity, suggesting that metabolites found in vivo are more active than unmodified flavonoids. We identified the solubility maximum of the tested flavonoids in culture medium and found a negative correlation between maximum solubility and cytotoxicity. The results of our study may help to identify novel flavonoid structures with optimized cytotoxic activity to be tested for anti-cancer treatment. (c) 2007 Elsevier Inc. All rights reserved.
机译:这项研究的目的是确定类黄酮中与增强的细胞毒性活性相关的结构元素。通过分析24和48小时后触发的细胞死亡,我们确定了23种不同的类黄酮对人白血病细胞Jurkat E6-1的细胞毒性(EC50),包括O-甲基化和葡萄糖醛酸化的代谢物。通过比较仅在一个结构元素上不同的所选分子的细胞毒性,我们确定了与增强的细胞毒性相关的几种结构-功能关系,包括存在2-3个双键,存在4-羰基和邻位比较B环中的间羟基化。具有3-羟基的分子显示出比其非羟基化的对应物低得多的细胞毒性。 O-甲基化和葡糖醛酸化与细胞毒性的显着增加有关,这表明体内发现的代谢物比未修饰的类黄酮更具活性。我们确定了测试的类黄酮在培养基中的最大溶解度,并发现最大溶解度和细胞毒性之间呈负相关。我们的研究结果可能有助于鉴定具有最佳细胞毒性活性的新型类黄酮结构,以进行抗癌治疗测试。 (c)2007 Elsevier Inc.保留所有权利。

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