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液相色谱-串联质谱法快速定量兔血浆中孕酮及其在透皮制剂药代动力学研究中的应用

LC-MS/MS Method for Rapid Quantification of Progesterone in Rabbit Plasma and Its Application in a Pharmacokinetic Study of the Transdermal Formulation.

作者信息

Tran Cao-Son, Bui Quang-Dong, Nguyen Ngoc-Tho Thi, Dao Minh-Hanh, Nguyen Thach-Tung

机构信息

Laboratory of Food Toxicology and Allergens Testing, National Institute for Food Control, Hanoi 10000, Vietnam.

Department of Pharmaceutics, Hanoi University of Pharmacy, Hanoi 10000, Vietnam.

出版信息

J Anal Methods Chem. 2020 Oct 30;2020:8889375. doi: 10.1155/2020/8889375. eCollection 2020.

Abstract

A rapid and effective method using QuEChERS-based sample preparation procedure and liquid chromatography-tandem mass spectrometry (LC-MS/MS) analysis has been developed and validated to determine progesterone in rabbit plasma. The analyte was extracted from plasma by acetonitrile with phase partitioning by a mixture of magnesium sulfate and sodium chloride. The supernatant was then directly injected into LC-MS/MS in a positive electrospray ionization mode and quantified using progesterone-d9 as the internal standard. The method linearity was in the range from 1 ng/mL (LOQ) to 200 ng/mL. Method recovery was from 86.0% to 103%, and repeatability was lower than 5.5%. The plasma sample was stable for 12 weeks stored at 18 ± 2°C. This method was applied to quantify progesterone in rabbit plasma in a pharmacokinetic study of two transdermal formulations: a reference drug and a eutectic-hydrogel system. The data indicate that the eutectic-hydrogel system's bioavailability was 1.5 times better than that of the reference drug, and the transdermal system is a potential drug delivery system for progesterone.

摘要

已开发并验证了一种基于QuEChERS的样品制备程序和液相色谱-串联质谱(LC-MS/MS)分析的快速有效方法,用于测定兔血浆中的孕酮。通过乙腈从血浆中提取分析物,并通过硫酸镁和氯化钠的混合物进行相分离。然后将上清液直接注入LC-MS/MS,采用正电喷雾电离模式,并以孕酮-d9作为内标进行定量。该方法的线性范围为1 ng/mL(定量下限)至200 ng/mL。方法回收率为86.0%至103%,重复性低于5.5%。血浆样品在18±2°C下储存12周稳定。该方法应用于两种透皮制剂(一种参比药物和一种低共熔水凝胶系统)药代动力学研究中兔血浆中孕酮的定量。数据表明,低共熔水凝胶系统的生物利用度比参比药物高1.5倍,该透皮系统是一种潜在的孕酮给药系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4781/7647766/d72742daabb1/JAMC2020-8889375.001.jpg

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