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首页> 外文期刊>The Journal of Pharmacology and Experimental Therapeutics: Official Publication of the American Society for Pharmacology and Experimental Therapeutics >Effect of the Mdr1a P-glycoprotein gene disruption on the tissue distribution of SDZ PSC 833, a multidrug resistance-reversing agent, in mice.
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Effect of the Mdr1a P-glycoprotein gene disruption on the tissue distribution of SDZ PSC 833, a multidrug resistance-reversing agent, in mice.

机译:Mdr1a P糖蛋白基因破坏对SDZ PSC 833(一种多药耐药性逆转剂)在小鼠中的组织分布的影响。

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The involvement of mdr1a P-glycoprotein (P-gP) on the tissue distribution of the multidrug resistance-reversing agent SDZ PSC 833 was assessed by use of mdr1a (-/-) mice. The mdr1a (-/-) and wild-type mdr1a (+/+) mice received a 4-h constantrate i.v. infusion (2 micrograms/min) of [14C]SDZ PSC 833. Mice were sacrificed at 0, 0.5, 1, 2 and 4 h during infusion and at 0.5, 1, 3, 8 and 24 h after stopping the infusion. Blood and tissues were analyzed on total (14C) and parental SDZ PSC 833 concentrations. Mdr1a (-/-) mice exhibited increased SDZ PSC 833 accumulation in cerebrum, cerebellum and somewhat in testes and small intestine compared with the wild-type mice. The difference between mdr1a (-/-) and (+/+) brain (cerebrum and cerebellum) penetration depended on SDZ PSC 833 blood concentrations, because this cyclosporin analog apparently governs its own brain penetration by inhibiting the P-glycoprotein pump in mdr1a (+/+) mice. Thus the mdr1a (-/-)/(+/+) ratio of brain concentrations tended to decrease and increase at high and low blood concentrations, respectively. These findings clearly demonstrate the interaction of SDZ PSC 833 with the P-glycoprotein present at the blood-brain barrier. The SDZ PSC 833 distribution in other mdr1a P-glycoprotein-expressed tissues, as well as its metabolism and elimination, was not affected by the mdr1a gene disruption. This suggests that factors other than mdr1a P-gP are involved in the disposition of this multidrug resistance-reversing agent.
机译:通过使用mdr1a(-/-)小鼠评估了mdr1a P糖蛋白(P-gP)对多药耐药性逆转剂SDZ PSC 833的组织分布的影响。 mdr1a(-/-)和野生型mdr1a(+ / +)小鼠接受4小时恒速静脉内注射。 (14 C] SDZ PSC 833输注(2微克/分钟)。在输注过程中分别在0、0.5、1、2和4小时以及停止输注后0.5、1、3、8和24小时处死小鼠。分析血液和组织的总浓度(14C)和父母SDZ PSC 833浓度。与野生型小鼠相比,Mdr1a(-/-)小鼠在大脑,小脑以及睾丸和小肠中的SDZ PSC 833积累量增加。 mdr1a(-/-)和(+ / +)脑(大脑和小脑)渗透之间的差异取决于SDZ PSC 833血药浓度,因为这种环孢菌素类似物显然通过抑制mdr1a中的P-糖蛋白泵来控制自身的脑渗透。 + / +)小鼠。因此,在高和低血药浓度下,脑浓度的mdr1a(-/-)/(+ / +)比值趋于降低和增加。这些发现清楚地证明了SDZ PSC 833与存在于血脑屏障中的P-糖蛋白的相互作用。 SDDR PSC 833在其他表达mdr1a P-糖蛋白的组织中的分布及其代谢和消除不受mdr1a基因破坏的影响。这表明除mdr1a P-gP之外的其他因素也参与了这种多药耐药性逆转剂的处置。

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