Simultaneous Determination and Pharmacokinetics of Three Steroidal Alkaloids in Rat Plasma by UHPLC–MS After Oral Administration of Three Different Preparations of Fritillaria ussuriensis Maxim Bulb

IF 1.8 4区 医学 Q4 BIOCHEMICAL RESEARCH METHODS
Haibo Wu, Chunjuan Yang, Jingnan Chen, Sen Li, Yuxin Wei, Meng Wang, Xinlan Li, YanYan Wang, Haixue Kuang, Zhibin Wang
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引用次数: 0

Abstract

Pharmacokinetic studies can provide a method for optimizing preparations. In this study, three most abundant compounds from Fritillaria ussuriensis bulb were isolated, and a selective, sensitive new analytical method was developed. This method aims for the simultaneous determination of peimisine-3-O-β-D-glucopyranoside (1), karelinine (2), and peimisine (3) in rat plasma after oral administration of F. ussuriensis bulb powder (FUP), total alkaloid extract (FUE), and its nanodispersion preparation (FUN) using UHPLC–MS/MS. The chromatographic separation was performed on the UHPLC Waters BEH C18 column. The pharmacokinetic results showed that among three groups, 1 and 3 exhibited slower absorption and elimination processes when rats were orally administered with FUP and FUE. Steroidal alkaloids 1 ~ 3 from FUN reached peak concentrations within 3 h. Compared with FUE and FUP, the absorption and elimination rates were accelerated, and the area under the curve (AUC) significantly increased. In this study, the pharmacokinetic characteristics of 1 ~ 2 were first detected and calculated parameters in rat plasma when orally administered in different dosage forms. And a new nanodispersion preparation, FUN, has been developed. FUN has better absorption efficiency and higher bioavailability compared with traditional powder oral administration.

UHPLC-MS同时测定三种乌苏贝母制剂大鼠血浆中三种甾体生物碱的药动学
药代动力学研究可为优化制剂提供方法。本研究从乌苏里贝母球茎中分离得到3个含量最高的化合物,并建立了一种选择性高、灵敏度高的分析方法。本方法采用UHPLC-MS /MS同时测定大鼠口服乌苏巴球茎粉(FUP)、总生物碱提取物(FUE)及其纳米分散体制剂(FUN)后血浆中贝米辛-3- o -β- d -葡萄糖吡喃苷(1)、卡列林碱(2)和贝米辛(3)的含量。采用UHPLC Waters BEH C18色谱柱进行色谱分离。药代动力学结果显示,三组大鼠口服FUP和FUE时,1和3的吸收和消除过程较慢。FUN中甾体生物碱1 ~ 3在3 h内浓度达到峰值。与FUE和FUP相比,其吸收和消除速度加快,曲线下面积(AUC)显著增加。本研究首先检测了1 ~ 2在口服不同剂量时在大鼠血浆中的药动学特征,并计算了参数。并开发了一种新型的纳米分散体——FUN。与传统的口服粉剂相比,FUN具有更好的吸收效率和更高的生物利用度。
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来源期刊
Biomedical Chromatography
Biomedical Chromatography 生物-分析化学
CiteScore
3.60
自引率
5.60%
发文量
268
审稿时长
2.3 months
期刊介绍: Biomedical Chromatography is devoted to the publication of original papers on the applications of chromatography and allied techniques in the biological and medical sciences. Research papers and review articles cover the methods and techniques relevant to the separation, identification and determination of substances in biochemistry, biotechnology, molecular biology, cell biology, clinical chemistry, pharmacology and related disciplines. These include the analysis of body fluids, cells and tissues, purification of biologically important compounds, pharmaco-kinetics and sequencing methods using HPLC, GC, HPLC-MS, TLC, paper chromatography, affinity chromatography, gel filtration, electrophoresis and related techniques.
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