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单宁酸和五倍子酰葡萄糖对P-糖蛋白功能的抑制作用。

Inhibition of P-glycoprotein function by tannic acid and pentagalloylglucose.

作者信息

Kitagawa Shuji, Nabekura Tomohiro, Nakamura Yutaka, Takahashi Tomoharu, Kashiwada Yoshiki

机构信息

Kobe Pharmaceutical University, Motoyamakita-machi 4-19-1, Kobe 658-8558, Japan.

出版信息

J Pharm Pharmacol. 2007 Jul;59(7):965-9. doi: 10.1211/jpp.59.7.0008.

Abstract

We studied the effects of tannic acid and 1(beta),2,3,4,6-penta-O-galloyl-D-glucose (pentagalloylglucose), one of the components of tannic acid, on the P-glycoprotein (P-gp) function in multidrug-resistant P-gp over-expressing KB-C2 cells. Both tannic acid and pentagalloylglucose markedly elevated the accumulation of P-gp substrates, rhodamine 123 and daunorubicin, by inhibiting their efflux. A 19-fold increase in cellular rhodamine 123 was observed for tannic acid at 60 microM (85 microg mL(-1)) and a 21-fold increase was observed for pentagalloylglucose at 100 microM (94 microg mL(-1)). The increasing effects of these compounds in the accumulation were much larger than that of (-)epigallocatechin-3-O-gallate (EGCG), which has been revealed to have a prominent inhibitory effect on P-gp compared with other flavonoids. Analysis of verapamil-stimulated ATPase activity in membrane vesicles expressing human P-gp suggested that inhibition of P-gp function by tannic acid and pentagalloylglucose was at least partly due to ATPase inhibition of P-gp. The findings also suggested that the presence of a large number of galloyl groups in polyphenols strengthens the interaction with regulatory regions in P-gp.

摘要

我们研究了单宁酸及其成分之一1(β),2,3,4,6 - 五 - O - 没食子酰 - D - 葡萄糖(五没食子酰葡萄糖)对多药耐药性P - 糖蛋白(P - gp)过表达的KB - C2细胞中P - 糖蛋白功能的影响。单宁酸和五没食子酰葡萄糖均通过抑制P - gp底物罗丹明123和柔红霉素的外排,显著提高了它们在细胞内的蓄积。在60微摩尔(85微克/毫升)的单宁酸作用下,细胞内罗丹明123增加了19倍;在100微摩尔(94微克/毫升)的五没食子酰葡萄糖作用下,细胞内罗丹明123增加了21倍。这些化合物对蓄积的增强作用远大于( - )表没食子儿茶素 - 3 - O - 没食子酸酯(EGCG),与其他类黄酮相比,EGCG已被证明对P - gp具有显著的抑制作用。对表达人P - gp的膜囊泡中维拉帕米刺激的ATP酶活性分析表明,单宁酸和五没食子酰葡萄糖对P - gp功能的抑制至少部分是由于对P - gp的ATP酶抑制作用。研究结果还表明,多酚中大量没食子酰基团的存在增强了与P - gp调节区域的相互作用。

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