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首页> 外文期刊>Journal of Medicinal Chemistry >Increased anti-P-glycoprotein activity of baicalein by alkylation on the a ring
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Increased anti-P-glycoprotein activity of baicalein by alkylation on the a ring

机译:通过环上的烷基化增加黄ical素的抗P糖蛋白活性

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The aqueous extract of Scutellariae baicalensis Georgi has inhibitory activity against P-gp 170, a multiple drug resistant gene product. Baicalein, one of the major flavones, was found to be responsible for this activity. The hydroxyl groups of the A ring of baicalein were systematically alkylated in order to assess the effect of such modifications on the activity against P-gp 170. The impact of the baicalein modifications on activity against the growth of a human nasopharyngeal. cancer cell line KB and its P-gp 170 overexpressing cell line KB/MDR were also examined. The results indicate that alkylation of R5 of baicalein does not have a major impact on the interaction with P-gp 170, whereas alkylation of R6 or R7 alone or both, could enhance the interaction of baicalein with P-gp 170 as well as the amount of intracellular accumulation of vinblastine, a surrogate marker for the activity of P-gp 170 pump of KB/MDR cells. In this case, the optimal linear alkyl functionality is a propyl side chain. These modifications could also alter the activity of compounds inhibiting cell growth. Among the different compounds synthesized, the most potent molecule against P-gp 170 is 5-methoxy-6,7-dipropyloxyflavone (23). Its inhibitory activity against P-gp 170 is approximately 40 times better, based on EC50 (concentration of the compound enhancing 50% of the intracellular vinblastine accumulation in the KB/MDR cells) and 3 times higher, based on A(max) (the intracellular vinblastine accumulation of the KB/MDR cells caused by the compound) as compared to baicalein. Compound 23 is also a more selective inhibitor than baicalein against P-gp 170, because its cytotoxicity is less than that observed for baicalein. The growth inhibitory IC50 of compound 23 against KB and KB/MDR cells are about the same, suggesting that compound 23 is unlikely to be a substrate of P-gp 170 pump. Acetylation of R6, R7 or both could also decrease EC50 and increase A(max). Acetylated compounds are more toxic than baicalein, and their potency against cell growth is compromised by the presence of P-gp 170, suggesting that these compounds are substrates of P-gp 170. Benzylation of R6 or R7 but not both also enhanced anti-P-gp170 activity and potency against cell growth; however, the presence of P-gp 170 in cells did not have an impact on their sensitivity to these molecules, suggesting that the benzylated compounds are inhibitors but not substrates of P-gp 170, and perhaps have a different mechanism of action. In conclusion, the substitutions of R6 and R7 hydroxyl groups by alkoxy groups, acetoxy groups, or benzyloxy groups could yield compounds with different modes of action against P-gp 170 with different mechanisms of action against cell growth.
机译:黄cut的水提取物对多种耐药基因产物P-gp 170具有抑制活性。黄ical素是主要的黄酮类化合物之一,被发现与这种活动有关。黄ical素A环的羟基被系统地烷基化,以评估这种修饰对针对P-gp 170的活性的影响。黄ical素修饰对针对人鼻咽的生长的活性的影响。还检查了癌细胞系KB及其过表达的P-gp 170细胞系KB / MDR。结果表明,黄ical苷R5的烷基化对与P-gp 170的相互作用没有重大影响,而R6或R7单独或两者的烷基化可增强黄ical素与P-gp 170的相互作用以及其用量长春碱的细胞内积累,长春碱是KB / MDR细胞P-gp 170泵活性的替代标志。在这种情况下,最佳的直链烷基官能度是丙基侧链。这些修饰也可以改变化合物抑制细胞生长的活性。在合成的不同化合物中,针对P-gp 170最有效的分子是5-甲氧基-6,7-二丙氧基黄酮(23)。基于EC50(提高KB / MDR细胞中50%的细胞内长春碱积累的化合物的浓度),其对P-gp 170的抑制活性大约好40倍,基于A(max)(3,3,5,5,6,7,8,9,9,8,9,8,8,9,9,8,9)。与黄ical素相比,化合物引起的KB / MDR细胞的细胞内长春碱积累。与黄ical苷相比,化合物23还是对P-gp 170更具选择性的抑制剂,因为它的细胞毒性小于黄ba苷的细胞毒性。化合物23对KB和KB / MDR细胞的生长抑制IC50大致相同,这表明化合物23不太可能成为P-gp 170泵的底物。 R6,R7或两者的乙酰化也可能降低EC50并增加A(max)。乙酰化的化合物比黄ical素更具毒性,P-gp 170的存在会削弱它们对细胞生长的效力,这表明这些化合物是P-gp 170的底物。R6或R7的苯甲酰化作用但同时不增强抗P -gp170活性和针对细胞生长的能力;然而,细胞中P-gp 170的存在对它们对这些分子的敏感性没有影响,这表明苄基化的化合物是抑制剂,但不是P-gp 170的底物,也许具有不同的作用机理。总之,R6和R7羟基被烷氧基,乙酰氧基或苄氧基取代可能会产生具有不同抗P-gp 170作用方式和不同抗细胞生长机制的化合物。

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