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P-glycoprotein- and organic anion-transporting polypeptide-mediated transport of periplocin may lead to drug–herb/drug–drug interactions

机译:P-糖蛋白和有机阴离子转运多肽介导的骨膜蛋白转运可能导致药-药/药-药相互作用

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Abstract: Periplocin, an active and toxic component of the traditional Chinese herbal medicine Periploca sepium Bge, is a cardiac glycoside compound that has been implicated in various clinical accidents. This study investigated the role of transporters in the intestinal absorption and biliary excretion of periplocin, as well as the possible metabolic mechanism of periplocin in liver S9. In a bidirectional transport assay using Madin–Darby canine kidney (MDCK) and MDCK multidrug-resistance protein (MRP)-1 cell monolayers, both in situ intestinal and liver-perfusion models were used to evaluate the role of efflux and uptake transporters on the absorption and biliary excretion of periplocin. In addition, in vitro metabolism of periplocin was investigated by incubating with human/rat liver S9 homogenate fractions to evaluate its metabolic mechanisms in liver metabolic enzymes. The results showed that P-glycoprotein (P-gp) was involved in the intestinal absorption of periplocin, whereas MRP2 and breast cancer-resistance protein were not. The efflux function of P-gp may be partly responsible for the low permeability and bioavailability of periplocin. Moreover, both inhibitors of P-gp and organic anion-transporting polypeptides (OATPs) increased periplocin biliary excretion. No obvious indications of metabolism were observed in the in vitro incubation system, which suggests that periplocin did not interact with the hepatic drug metabolic enzymes. The results of this study showed that the efflux and uptake transporters P-gp and OATPs were involved in the absorption and biliary excretion of periplocin, which may partially account for its low permeability and bioavailability. As a toxic compound, potential drug–herb/herb–herb interactions based on OATPs and P-gp should be taken into account when using P. sepium Bge in the clinic.
机译:摘要:Periplocin是中草药Periploca sepium Bge的活性和有毒成分,是一种强心苷类化合物,已引起各种临床事故。这项研究调查转运蛋白在periprocin的肠道吸收和胆汁排泄中的作用,以及perplocin在肝脏S9中可能的代谢机制。在使用Madin-Darby犬肾(MDCK)和MDCK多药抗性蛋白(MRP)-1细胞单层的双向转运测定中,原位肠和肝灌注模型均用于评估外排和摄取转运蛋白在肝细胞中的作用。骨膜素的吸收和胆汁排泄。另外,通过与人/大鼠肝脏S9匀浆级分一起温育研究了骨膜老蛋白的体外代谢,以评估其在肝脏代谢酶中的代谢机制。结果表明,P-糖蛋白(P-gp)参与了膜溶菌素的肠道吸收,而MRP2和抗乳腺癌蛋白则没有。 P-gp的外排功能可能部分导致了骨膜黏膜蛋白的低渗透性和生物利用度。此外,P-gp抑制剂和有机阴离子转运多肽(OATP)均会增加周霉素的胆汁排泄。在体外温育系统中未观察到明显的代谢迹象,这表明粘膜环孢菌素不与肝药物代谢酶相互作用。这项研究的结果表明,外泌素和摄取转运蛋白P-gp和OATPs参与了膜红霉素的吸收和胆汁排泄,这可能部分解释了其渗透性和生物利用度低。作为有毒化合物,在临床中使用P. sepium Bge时,应考虑基于OATP和P-gp的潜在药物-药草/药草-药相互作用。

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