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首页> 外文期刊>American Journal of Physiology >Contribution of ion pair complexation with bile salts to biliary excretion of organic cations in rats.
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Contribution of ion pair complexation with bile salts to biliary excretion of organic cations in rats.

机译:胆汁盐离子对络合物对大鼠胆汁有机阳离子排泄的影响。

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摘要

The objective of this study was to examine whether ion pair complexation with endogenous bile salts in hepatocytes contributes to the preferential biliary excretion of organic cations (OCs). Tributylmethylammonium (TBuMA; mol wt 200) and triethylmethylammonium (TEMA; mol wt 116) were selected as model OCs that exhibit significant and negligible biliary excretion, respectively, in rats. The apparent lipophilicity of TBuMA, but not that of TEMA, was increased by the presence of either rat bile or specific bile salts, suggesting the formation of lipophilic ion pair complexes for TBuMA with bile salts in the liver. The uptake of TBuMA into canalicular liver plasma membrane (cLPM) vesicles, but not that of TEMA, was increased in the presence of bile salts, with a significant increase for both ATP-dependent transport and passive diffusion. The uptake of TBuMA in the presence of the bile salts was inhibited by representative P-glycoprotein (P-gp) substrates and vice versa, suggesting the involvement of P-gp in the canalicular excretion of TBuMA-bile salt complexes in vivo. Increased affinity toward P-gp is suggested as the mechanism responsible for the increased ATP-dependent transport for the ion pair complexes. We propose that ion pair formation with bile slats in hepatocytes may be responsible for the preferential biliary excretion of high-molecular-weight OCs including TBuMA.
机译:这项研究的目的是检查肝细胞中离子对与内源性胆汁盐的络合是否有助于有机阳离子(OCs)的优先胆汁排泄。选择三丁基甲基铵(TBuMA; mol wt 200)和三乙基甲基铵(TEMA; mol wt 116)作为模型OC,它们在大鼠中分别表现出显着的和可忽略的胆汁排泄。大鼠胆汁或特定胆汁盐的存在增加了TBuMA的表观亲脂性,但TEMA却没有,表明肝脏中TBuMA与胆汁盐形成了亲脂性离子对复合物。在存在胆盐的情况下,TBuMA对小管肝质膜(cLPM)囊泡的摄取增加,但对TEMA的摄取没有增加,ATP依赖性转运和被动扩散均显着增加。代表性的P-糖蛋白(P-gp)底物抑制了胆汁盐存在下TBuMA的摄取,反之亦然,这表明P-gp参与了体内TBuMA-胆汁盐复合物的小管排泄。提示对P-gp的亲和力增加是离子对复合物的ATP依赖性转运增加的机制。我们建议在肝细胞中胆汁板条形成离子对可能是对包括TBuMA的高分子量OC的优先胆汁排泄的原因。

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