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[黄芩苷 L-氨基酸前药的设计、合成及抗氧化活性评价]

[Design, synthesis and anti-oxidative evaluation of L-amino acid prodrugs of scutellarein].

作者信息

Fu Xiao-zhong, Zhang Wei, Wang Yong-lin, Lan Yan-yu, Wang Ai-min, Zhou Wen, Huang Yong, Li Jing, Xing Feng-jing, Liu Ying

机构信息

School of Pharmacy, Guiyang Medical College, Guiyang 550004, China.

出版信息

Yao Xue Xue Bao. 2011 May;46(5):548-55.

Abstract

To design and synthesize a series of novel scutellarein 4'-L-amino acid prodrugs with more potent anti-oxidative activity and improved physicochemical properties. Scutellarein was used as lead compound, according to successful experience of improving bioavailability of oral administration drugs by active transport mechanism, principle of hybridization was used to introducing L-amino acid structural fragments at 4'-position of scutellarein to design and synthesize target scutellarein 4'-L-amino acid prodrugs. The synthetic compounds were tested on their physicochemical properties and in vitro anti-oxidative activity against H202 induced oxidative damage in PC12 cells. Five compounds were found to have more potent anti-oxidative activity than positive control VE. Moreover the physicochemical properties of synthesized compounds were evaluated, and the results revealed that L-amino acid ether derivatives are more stable (t1/2 9-92 h) than their corresponding ester derivatives (t1/2 0.5 h). Water solubility of scutellarein 4'-L-amino acid ester and ether derivatives were 1 796-4 100 microg.mL-1 and 27.7-81.1 microg.mL-1 respectively, in comparison with scutellarin, the solubility of compounds 18, 19 and 22, 24-27 increased about 120-280 fold and 2-6 fold respectively. All these results suggested that L-amino acid prodrug strategy has significant potential in scutellarein prodrug design.

摘要

设计并合成一系列具有更强抗氧化活性和改善理化性质的新型黄芩苷4'-L-氨基酸前药。以黄芩苷为先导化合物,根据通过主动转运机制提高口服给药药物生物利用度的成功经验,采用杂化原理在黄芩苷的4'-位引入L-氨基酸结构片段,设计并合成目标黄芩苷4'-L-氨基酸前药。对合成的化合物进行了理化性质测试以及针对H2O2诱导的PC12细胞氧化损伤的体外抗氧化活性测试。发现有5种化合物具有比阳性对照VE更强的抗氧化活性。此外,对合成化合物的理化性质进行了评估,结果表明L-氨基酸醚衍生物比其相应的酯衍生物更稳定(半衰期9 - 92小时)(酯衍生物半衰期0.5小时)。黄芩苷4'-L-氨基酸酯和醚衍生物的水溶性分别为1796 - 4100μg·mL-1和27.7 - 81.1μg·mL-1,与黄芩苷相比,化合物18、19以及22、24 - 27的溶解度分别增加了约120 - 280倍和2 - 6倍。所有这些结果表明,L-氨基酸前药策略在黄芩苷前药设计中具有巨大潜力。

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