Colombo Federico, Armstrong Catherine, Duan Jianmin, Rioux Nathalie
Biological Sciences, Boehringer Ingelheim (Canada) Ltd., Laval, Québec, Canada.
Xenobiotica. 2012 Feb;42(2):157-63. doi: 10.3109/00498254.2011.614021. Epub 2011 Oct 2.
Prediction of biliary excretion is a challenge for drug discovery scientists due to the lack of in vitro assays. This study explores the possibility of establishing a simple assay to predict in vivo biliary excretion via the mrp2 transport system. In vitro mrp2 activity was determined by measuring the ATP-dependent uptake of 5(6)-carboxy-2',7'-dichlorofluorescein (CDCF) in canalicular plasma membrane vesicles (cLPM) from rat livers. The CDCF uptake was time- and concentration-dependent (K(m) of 2.2 ± 0.3 µM and V(max) of 115 ± 26 pmol/mg/min) and strongly inhibited by the mrp2 inhibitors, benzbromarone, MK-571, and cyclosporine A, with IC(50) values ≤ 1.1 µM. Low inhibition of CDCF uptake by taurocholate (BSEP inhibitor; 57 µM) and digoxin (P-gp inhibitor; 101 µM) demonstrated assay specificity towards mrp2. A highly significant correlation (r(2) = 0.959) between the in vitro IC(50) values from the described mrp2 assay and in vivo biliary excretion in rats was observed using 10 literature compounds. This study demonstrated, for the first time, that a high throughput assay could be established with the capability of predicting biliary excretion in the rat using CDCF as a substrate.
由于缺乏体外检测方法,预测胆汁排泄对药物研发科学家来说是一项挑战。本研究探索了建立一种简单检测方法以通过mrp2转运系统预测体内胆汁排泄的可能性。通过测量大鼠肝脏胆小管质膜囊泡(cLPM)中5(6)-羧基-2',7'-二氯荧光素(CDCF)的ATP依赖性摄取来测定体外mrp2活性。CDCF摄取具有时间和浓度依赖性(K(m)为2.2±0.3µM,V(max)为115±26 pmol/mg/min),并被mrp2抑制剂苯溴马隆、MK-571和环孢素A强烈抑制,IC(50)值≤1.1µM。牛磺胆酸盐(BSEP抑制剂;57µM)和地高辛(P-糖蛋白抑制剂;101µM)对CDCF摄取的低抑制表明该检测方法对mrp2具有特异性。使用10种文献报道的化合物,观察到上述mrp2检测方法的体外IC(50)值与大鼠体内胆汁排泄之间存在高度显著的相关性(r(2)=0.959)。本研究首次证明,可以建立一种高通量检测方法,以CDCF为底物预测大鼠的胆汁排泄。