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类黄酮缀合物与有机阴离子转运体(OATs)相互作用,并减弱有机阴离子转运蛋白 1(OAT1/SLC22A6)介导的阿德福韦的细胞毒性。

Flavonoid conjugates interact with organic anion transporters (OATs) and attenuate cytotoxicity of adefovir mediated by organic anion transporter 1 (OAT1/SLC22A6).

机构信息

School of Food Science and Nutrition, University of Leeds, Woodhouse Lane, Leeds, UK.

出版信息

Biochem Pharmacol. 2011 Apr 1;81(7):942-9. doi: 10.1016/j.bcp.2011.01.004. Epub 2011 Jan 16.

Abstract

Flavonoids are conjugated by phase II enzymes in humans to form glucuronidated and sulfated metabolites that are excreted in urine via the kidney. In this study, we examined the interaction between metabolites of quercetin and isoflavonoids found in vivo with human organic anion transporters 1 (OAT1) and 3 (OAT3) and their potential in attenuating OAT-induced cytotoxicity of adefovir. Accumulation of flavonoid conjugates was studied in human embryonic kidney 293H cells overexpressing OAT1 or OAT3. OAT1-overexpressing cells exhibited an increased uptake of the sulfated conjugates, genistein-4'-O-sulfate and quercetin-3'-O-sulfate. OAT3-overexpressing cells demonstrated enhanced uptake of glucuronide conjugates, such as daidzein-7-O-glucuronide, genistein-7-O-glucuronide, glycitein-7-O-glucuronide and quercetin-3'-O-glucuronide. Position of conjugation was important since quercetin-3-O-glucuronide and quercetin-7-O-glucuronide were poorly transported. Kinetic analysis revealed high affinity uptake of quercetin-3'-O-sulfate by OAT1 (K(m)=1.73μM; V(max)=105 pmol/min/mg). OAT3 transported isoflavone glucuronides with lower affinity (K(m)=7.9-19.1 μM) but with higher V(max) (171-420 pmol/min/mg). Quercetin-3'-O-sulfate strongly inhibited OAT1-mediated p-aminohippuric acid uptake with an IC(50) of 1.22μM. Transport of 5-carboxyfluorescein by OAT3 was potently inhibited by quercetin-3-O-glucuronide, quercetin-3'-O-glucuronide and quercetin-3'-O-sulfate (IC(50)=0.43-1.31μM). In addition, quercetin-3'-O-sulfate was shown to effectively reduce OAT1-mediated cytotoxicity of adefovir, an antiviral drug, in a dose-dependent manner. These data suggest that OAT1 and OAT3 are responsible for basolateral uptake of flavonoid conjugates in kidney, and flavonoid conjugates inhibit OAT1 and OAT3 activity at physiologically relevant concentrations. Interaction with OATs limits systemic availability of flavonoids and may be a mechanism of food-drug interaction via inhibition of renal uptake.

摘要

类黄酮在人体内通过 II 相酶共轭形成葡萄糖醛酸和硫酸化代谢物,通过肾脏排泄到尿液中。在这项研究中,我们研究了体内发现的槲皮素和异黄酮的代谢物与人类有机阴离子转运蛋白 1(OAT1)和 3(OAT3)的相互作用及其在减轻阿德福韦诱导的 OAT 细胞毒性方面的潜力。在过表达 OAT1 或 OAT3 的人胚肾 293H 细胞中研究了类黄酮共轭物的积累。OAT1 过表达细胞表现出硫酸化共轭物,染料木黄酮-4'-O-硫酸盐和槲皮素-3'-O-硫酸盐的摄取增加。OAT3 过表达细胞显示出对葡萄糖醛酸共轭物的摄取增强,如大豆苷元-7-O-葡萄糖醛酸、染料木黄酮-7-O-葡萄糖醛酸、黄豆苷元-7-O-葡萄糖醛酸和槲皮素-3'-O-葡萄糖醛酸。共轭位置很重要,因为槲皮素-3-O-葡萄糖醛酸和槲皮素-7-O-葡萄糖醛酸的转运能力较差。动力学分析显示 OAT1 对槲皮素-3'-O-硫酸盐具有高亲和力摄取(K(m)=1.73μM;V(max)=105 pmol/min/mg)。OAT3 以较低的亲和力(K(m)=7.9-19.1 μM)但更高的 V(max)(171-420 pmol/min/mg)转运异黄酮葡萄糖醛酸。槲皮素-3'-O-硫酸盐强烈抑制 OAT1 介导的对氨马尿酸摄取,IC(50)为 1.22μM。OAT3 转运 5-羧基荧光素的活性被槲皮素-3-O-葡萄糖醛酸、槲皮素-3'-O-葡萄糖醛酸和槲皮素-3'-O-硫酸盐强烈抑制(IC(50)=0.43-1.31μM)。此外,槲皮素-3'-O-硫酸盐被证明能够有效降低阿德福韦(一种抗病毒药物)介导的 OAT1 细胞毒性,呈剂量依赖性。这些数据表明,OAT1 和 OAT3 负责肾脏中类黄酮共轭物的基底外侧摄取,类黄酮共轭物在生理相关浓度下抑制 OAT1 和 OAT3 活性。与 OATs 的相互作用限制了类黄酮的全身可用性,并且可能是通过抑制肾脏摄取来实现食物-药物相互作用的机制。

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