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首页> 外文期刊>Biological & pharmaceutical bulletin >Characterization of the transport of a cationic octapeptide, octreotide, in rat bile canalicular membrane: possible involvement of P-glycoprotein.
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Characterization of the transport of a cationic octapeptide, octreotide, in rat bile canalicular membrane: possible involvement of P-glycoprotein.

机译:阳离子八肽,八氢肽的传输的表征,在大鼠胆汁釜膜中:P-糖蛋白的可能涉及。

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The cyclic cationic octapeptide octreotide is known to be taken up by hepatocytes, with more than 70% of an intravenous dose being excreted into bile in unchanged form. We have already reported that a transporter other than the canalicular multispecific organic anion transporter (cMOAT) is responsible for the biliary excretion of octreotide in vivo. The aim of this study is to obtain an insight into the transporter of octreotide in bile canalicular membrane. The effect of various compounds on the ATP-dependent uptake of octreotide by rat bile canalicular membrane vesicles (CMV) was investigated. The ATP-dependent uptake of [14C]octreotide by CMV was inhibited by verapamil, vincristine and PSC833 in a concentration-dependent manner, the maximum inhibitory effects of these compounds being almost equal to that of excess unlabeled octreotide, while taurocholic acid (TCA) caused no inhibition at concentrations much higher than the Km of TCA uptake by CMV. Mutual inhibition between octreotide and dinitrophenylglutathione (DNP-SG), a representative substrate for cMOAT was only minor and could only be observed at concentrations much higher than the Km for each ligand uptake. To examine the contribution of P-glycoprotein to the biliary excretion of octreotide in vivo, biliary excretion of octreotide was compared between P-glycoprotein-induced rats by phenothiazine (PTZ) treatment and normal rats. A significant increase in the biliary excretion rate was observed in PTZ-treated rats. Only a slight decrease in biliary excretion was observed in mdr1a knock-out mice compared with normal mice, which may be explained by the associated induction of mdr1b. These results demonstrate that the transporter for octreotide is different from cMOAT and the bile acid transporter. The involvement of P-glycoprotein in the biliary excretion of octreotide is suggested.
机译:已知循环阳离子八肽奥雷肽被肝细胞占用,超过70%的静脉剂量以不变的形式排出胆汁。我们已经报告说,除了釜多特异性有机阴离子转运蛋白(CMOOD)之外的转运蛋白负责体内八肽的胆汁排泄。本研究的目的是在胆汁管膜中获得进入八氧化糖苷的转运蛋白的洞察力。研究了各种化合物对大鼠胆管膜囊泡(CMV)的八萜苷的ATP依赖性摄取的影响。 CMV以浓度依赖性方式抑制CMV的ATP依赖性摄取,这些化合物的最大抑制作用几乎等于多发性未标记的Octreotide,而牛磺酸(TCA)在CMV通过TCA摄取的高于高于TCA的浓度引起抑制。八氧化物和二胞增多蛋白(DNP-SG)之间的相互抑制,用于CMOOD的代表性底物仅是次要的,只能以高于每种配体摄取的浓度观察到的浓度。为了检查对糖蛋白酶在体内octreotide的胆汁排泄的贡献中,比较苯噻嗪(PTZ)治疗和正常大鼠对糖蛋白诱导的大鼠进行奥雷德雷肽的胆汁排泄。在PTZ处理的大鼠中观察到胆道排泄速率显着增加。与正常小鼠相比,在MDR1a敲除小鼠中仅观察到胆汁排泄的略微降低,这可以通过MDR1B的相关诱导来解释。这些结果表明,八氧化物的转运蛋白与CMOOD和胆汁酸转运蛋白不同。提出了p-糖蛋白在八甘油酯胆汁排泄中的参与。

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