首页> 外文期刊>Journal of Pharmaceutical and Biomedical Analysis: An International Journal on All Drug-Related Topics in Pharmaceutical, Biomedical and Clinical Analysis >Pharmacokinetic characterization of oxymatrine and matrine in rats after oral administration of radix Sophorae tonkinensis extract and oxymatrine by sensitive and robust UPLC-MS/MS method
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Pharmacokinetic characterization of oxymatrine and matrine in rats after oral administration of radix Sophorae tonkinensis extract and oxymatrine by sensitive and robust UPLC-MS/MS method

机译:灵敏而稳定的UPLC-MS / MS法测定苦参提取物和氧化苦参碱口服后大鼠中氧化苦参碱和苦参碱的药代动力学特征

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摘要

The purpose of this study is to systematically investigate the pharmacokinetic (PK) behaviors of radix Sophorae tonkinensis (S. tonkinensis) using oxymatrine (OMT) and matrine (MT) as the target markers (2mg/kg OMT and 1.3mg/kg MT, oral administration). The PK characteristics in radix S. tonkinensis extracts were also compared with those of pure OMT. A fast ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) method was developed. OMT absorption was very fast, and no significant differences were observed (p0.05) in tmax, CL, and t1/2 for both pure OMT and extracts. Cmax and AUC0→∞ of pure OMT were significantly higher than those of S. tonkinensis extracts (Cmax, 61.64±6.65 vs. 43.24±10.14ng/mL; AUC, 9894.48±2234.99 vs. 4730.30±3503.8minng/mL) (p0.05). However, the absolute OMT bioavailability of pure OMT was higher than that of the compound in radix S. tonkinensis extracts (6.79±2.52% vs. 1.87±2.66%). By contrast, the bioavailability of total alkaloids (OMT+MT) after pure OMT administration was 81.14±8.83%, similar to that of radix S. tonkinensis extracts (69.36±17.37%) (p0.05). It was presumed that OMT absorption has no effect on the bioavailability of the two alkaloids. Other constituents in radix S. tonkinensis extracts can influence the transformation of OMT to MT, which directly leads to variations in the PK behavior of OMT. In addition, the protein binding of OMT and MT in plasma was very low (4.80%-8.95% for OMT, 5.10-10.55% for MT). In conclusion, OMT in radix S. tonkinensis extracts exhibits different PK behaviors with pure OMT through the transformation of OMT to MT due to other complex ingredients.
机译:这项研究的目的是系统地研究氧化苦参碱(OMT)和苦参碱(MT)作为目标标志物(2mg / kg OMT和1.3mg / kg MT,口服)。还比较了板蓝根提取物中的PK特征与纯OMT的PK特征。建立了一种快速的超高效液相色谱-串联质谱(UPLC-MS / MS)方法。 OMT吸收非常快,并且纯OMT和提取物的tmax,CL和t1 / 2均未观察到显着差异(p> 0.05)。纯OMT的Cmax和AUC0→∞显着高于tonkinensis提取物(Cmax,61.64±6.65 vs. 43.24±10.14ng / mL; AUC,9894.48±2234.99 vs. 4730.30±3503.8minng / mL)(p < 0.05)。但是,纯OMT的绝对OMT生物利用度高于该化合物在丹参提取物中的6.79±2.52%对1.87±2.66%。相比之下,纯OMT施用后总生物碱(OMT + MT)的生物利用度为81.14±8.83%,与丹参提取物的生物利用度(69.36±17.37%)相似(p> 0.05)。据推测,OMT吸收对这两种生物碱的生物利用度没有影响。根草提取物中的其他成分可能影响OMT向MT的转化,这直接导致OMT PK行为的变化。此外,血浆中OMT和MT的蛋白结合率非常低(OMT为4.80%-8.95%,MT为5.10-10.55%)。总之,由于其他复杂的成分,通过从OMT到MT的转化,纯根OMT中的山茱S提取物中的OMT表现出不同的PK行为。

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