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采用 UHPLC-MS/MS 法同时测定大鼠血浆中的 savaside A、acteoside 和 isoacteoside:不同给药途径下独一味的比较药代动力学和生物利用度特征。

Simultaneous determination of savaside A, acteoside, and isoacteoside in rat plasma by UHPLC-MS/MS: Comparative pharmacokinetic and bioavailability characteristics of Monochasma savatieri via different routes of administration.

机构信息

Jiangxi University of Traditional Chinese Medicine, Nanchang, P. R. China.

College of Pharmaceutical Sciences, Soochow University, Suzhou, P. R. China.

出版信息

J Sep Sci. 2018 Dec;41(24):4408-4418. doi: 10.1002/jssc.201800545. Epub 2018 Nov 2.

Abstract

Phenylethanoid glycosides are the bioactive components in Monochasma savatieri that primarily contains savaside A, acteoside, and isoacteoside. Pharmacological research has been comprehensive, but there have been few studies on pharmacokinetics, especially about savaside A. An ultra high performance liquid chromatography with tandem mass spectrometry with multiple reaction monitoring mode was developed and validated for the simultaneous determination of the three compounds from M. savatieri. Meanwhile, this method was fully validated and successfully applied to compare the pharmacokinetics and bioavailability following four different routes included intravenous injection, intraperitoneal injection, muscle injection, and oral administration. The results indicated that the three compounds could be rapidly absorbed within 1 h, and the main pharmacokinetic parameters showed significant differences (P < 0.05). The bioavailability of oral administration, intramuscular injection, and intraperitoneal injection did not exceed 0.2, 25, and 10%, respectively. Comparing the bioavailability, it exhibited that acteoside > isoacteoside > savaside A following the four administration routes. Notably, the isomerization position of acteoside and isoacteoside mainly occurred in the liver according to the pharmacokinetics profiles of intraperitoneal and intravenous injection, in addition, isoacteoside exhibited more structural selectivity than acteoside in vivo. It demonstrated that three compounds undergo different processes, mainly affected by the first-pass effect and their intestinal stability is extremely poor.

摘要

苯乙醇苷类是独一味中具有生物活性的成分,主要含有 savaside A、毛蕊花糖苷和异毛蕊花糖苷。虽然对其药理学研究已经很全面,但对其药代动力学研究却很少,特别是关于 savaside A。本研究建立了一种超高效液相色谱-串联质谱法,采用多反应监测模式,可同时测定独一味中的三种化合物。同时,该方法进行了全面验证,并成功应用于比较四种不同给药途径(静脉注射、腹腔注射、肌肉注射和口服)后的药代动力学和生物利用度。结果表明,三种化合物在 1 h 内可迅速吸收,主要药代动力学参数差异有统计学意义(P<0.05)。口服、肌肉注射和腹腔注射的生物利用度均不超过 0.2%、25%和 10%。比较生物利用度发现,四种给药途径下,毛蕊花糖苷>异毛蕊花糖苷>savaside A。值得注意的是,根据腹腔和静脉注射的药代动力学特征,毛蕊花糖苷和异毛蕊花糖苷的异构化位置主要发生在肝脏,此外,异毛蕊花糖苷在体内比毛蕊花糖苷具有更高的结构选择性。这表明三种化合物经历了不同的过程,主要受首过效应的影响,且其肠道稳定性极差。

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