首页> 外文期刊>Journal of pharmaceutical sciences. >Mechanism of hepatobiliary transport of a novel thromboxane A2 receptor antagonist, (2-(4-chlorophenylsulfonylaminomethyl)indan-5-yl)acetate (Z-335), and its xenobiotic taurine conjugate (Z-335-Tau) in rats.
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Mechanism of hepatobiliary transport of a novel thromboxane A2 receptor antagonist, (2-(4-chlorophenylsulfonylaminomethyl)indan-5-yl)acetate (Z-335), and its xenobiotic taurine conjugate (Z-335-Tau) in rats.

机译:新型血栓烷A2受体拮抗剂,(2-(4-氯苯基磺酰基氨基甲基)茚满-5-基)乙酸酯(Z-335)及其异种牛磺酸牛磺酸缀合物(Z-335-Tau)的肝胆运输机制。

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We investigated the mechanism of hepatobiliary transport of a novel thromboxane A(2) receptor antagonist, [2-(4-chlorophenylsulfonylaminomethyl)indan-5-yl]acetate (Z-335), and its taurine conjugate (Z-335-Tau) in normal Sprague-Dawley rats (SDRs) and Eisai hyperbilirubinemic rats (EHBRs). The biliary excretion rate/unbound concentration in the cytosol (nu(bile)/C(u,cyt)) of Z-335 was markedly decreased in EHBRs, whereas nu(bile)/C(u,cyt) values for Z-335-Tau did not differ significantly between EHBRs and SDRs. These results suggest that biliary excretion of Z-335 involves mrp2, whereas Z-335-Tau is excreted by other transporters. The effects of inhibitors on the biliary excretion of Z-335 and Z-335-Tau were also examined in SDRs. After infusion of bromosulfophthalein (BSP), the nu(bile)/C(u,cyt) of Z-335 was significantly decreased, whereas that of Z-335-Tau decreased to 50% of control values by infusion of indocyanine green (ICG) or taurocholate. However, biliary excretion of Z-335-Tau was maintained at a highly concentrative. In conclusion, the biliary excretion of Z-335 involves mrp2, whereas Z-335-Tau is excreted into the bile by active transport systems that remain intact in EHBRs. The mdr2 and/or BSEP/spgp might contribute to a part of total biliary excretion of Z-335-Tau, however, these transporters have not played a major role in the biliary excretion of Z-335-Tau.
机译:我们调查了新型血栓烷A(2)受体拮抗剂[2-(4-氯苯基磺酰基氨基甲基)茚满-5-基]乙酸酯(Z-335)及其牛磺酸缀合物(Z-335-Tau)的肝胆运输机制。在正常的Sprague-Dawley大鼠(SDR)和Eisai高胆红素血症大鼠(EHBR)中。在EHBR中,Z-335的胆汁排泄率/细胞质中的未结合浓度(nu(bile)/ C(u,cyt))明显降低,而Z-335的nu(bile)/ C(u,cyt)值-Tau在EHBR和SDR之间没有显着差异。这些结果表明Z-335的胆汁排泄涉及mrp2,而Z-335-Tau被其他转运蛋白排泄。在SDR中也检查了抑制剂对Z-335和Z-335-Tau胆汁排泄的影响。注入溴磺酞(BSP)后,通过吲哚菁绿(ICG)注入,Z-335的nu(胆汁)/ C(u,cyt)显着降低,而Z-335-Tau的nu(胆汁)/ C(u,cyt)降低至对照值的50% )或牛磺胆酸盐。但是,Z-335-Tau的胆汁排泄保持在高度集中的状态。总之,Z-335的胆汁排泄涉及mrp2,而Z-335-Tau通过在EHBR中保持完整的主动转运系统排入胆汁。 mdr2和/或BSEP / spgp可能占Z-335-Tau总胆汁排泄的一部分,但是,这些转运蛋白在Z-335-Tau胆汁排泄中并未发挥主要作用。

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