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Pharmacokinetics, Tissue Distribution, and Elimination of Three Active Alkaloids in Rats after Oral Administration of the Effective Fraction of Alkaloids from Ramulus Mori , an Innovative Hypoglycemic Agent

机译:口服给药创新降糖药Ramulus Mori有效部分生物碱后,大鼠体内三种活性生物碱的药代动力学,组织分布和消除

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In this study, we systematically investigated the plasma pharmacokinetics, tissue distribution, and elimination of three active alkaloids after oral administration of the effective fraction of alkaloids from Ramulus Mori (SZ–A)—an innovative hypoglycemic agent—in rats. Moreover, the influences of other components in SZ–A on dynamic process of alkaloids were explored for the first time. The results showed that 1-deoxynojirimycin (DNJ), fagomine (FGM) and 1,4-dideoxy-1,4-imino- d- arabinitol (DAB) exhibited nonlinear pharmacokinetics following oral administration of SZ–A (40–1000 mg/kg). The prolonged t 1/2 and greater area under concentration-time curve (AUC) versus time (AUC 0–t ) of DNJ for SZ–A than for purified DNJ has been observed after both oral and intravenous administration. It was found that other components in SZ–A could enhance the absorption of DNJ through the intestinal barrier. The major distribution tissues of DNJ, FGM, and DAB were the gastrointestinal tract, liver, and kidney. Three alkaloids were mainly excreted into urine and feces, but less into bile. Interestingly, the excess excretion of FGM was revealed to be partly due to the biotransformation of other components in SZ–A via gut microbiota. These information provide a rational basis for the use of SZ–A in clinical practice.
机译:在这项研究中,我们系统地研究了大鼠中创新有效的降血糖药物Ramulus Mori(SZ–A)的有效生物碱的有效成分口服后的血浆药代动力学,组织分布以及三种活性生物碱的消除。此外,首次探索了SZ-A中其他成分对生物碱动态过程的影响。结果表明,口服SZ–A(40–1000 mg / min)后,1-脱氧野oji霉素(DNJ),fagomine(FGM)和1,4-dideoxy-1,4-亚氨基-d-阿拉伯糖醇(DAB)表现出非线性的药代动力学。公斤)。口服和静脉给药后,与纯净的DNJ相比,SZ–A的DNJ的浓度-时间曲线(AUC)与时间(AUC 0–t)的延长的t 1/2和更大的面积均已观察到。发现SZ–A中的其他成分可通过肠屏障增强DNJ的吸收。 DNJ,FGM和DAB的主要分布组织是胃肠道,肝脏和肾脏。三种生物碱主要通过尿液和粪便排泄,但很少排入胆汁。有趣的是,FGM的过量排泄被发现部分归因于SZ–A中其他成分通过肠道菌群的生物转化。这些信息为在临床实践中使用SZ–A提供了合理的依据。

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