A novel HPLC method for selexipag in human plasma and application to a prototype pharmacokinetic study

IF 1.7 4区 化学 Q3 CHEMISTRY, ANALYTICAL
Burhan Ceylan, Gizem Tırıs, Ş. E. KEPEKÇİ TEKKELİ, C. Önal, A. Önal
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引用次数: 0

Abstract

A novel simple and cost effective HPLC technique was presented for the quantification of selexipag (SLP) in human plasma sample and the technique's applicability to a pharmacokinetic investigation. Chromatographic separation was achieved with C18 (5 µm × 4.6 mm × 150 mm) column, at 30 °C with isocratic elution, mobile phase composed of solution A (acetonitrile), and solution B (0.5% formic acid) (65:35 v/v) at flow rate 1.2 mL min−1. The linearity range is 10–150 ng mL−1. As sample preparation step human plasma was precipitated with acetonitrile and the detection was provided at 300 nm. The retention time is 8.20 ± 0.02 min. LOD is found to be 3.3 ng mL−1 for drug. The method was applied to the analysis of SLP in human plasma with good recovery as 97.83%. Validation of the studied methods was carried out according to EMA guideline. The new method applied on a prototype pharmacokinetic study by administration of 800 μg SLP to a healthy volunteer and parameters like AUC0–24, AUC0–∞, Cmax, tmax, and t1/2 were assessed.
一种新型高效液相色谱法测定人血浆中的西来昔帕并将其应用于原型药代动力学研究
本研究介绍了一种简便、经济的新型高效液相色谱技术,用于定量检测人体血浆样品中的西来昔布(SLP),并将该技术应用于药物动力学研究。色谱分离采用 C18(5 µm × 4.6 mm × 150 mm)色谱柱,温度为 30 °C,等度洗脱,流动相为溶液 A(乙腈)和溶液 B(0.5% 甲酸)(65:35 v/v),流速为 1.2 mL min-1。线性范围为 10-150 纳克 mL-1。样品制备步骤是用乙腈沉淀人血浆,在 300 nm 波长下检测。保留时间为 8.20 ± 0.02 分钟。药物的检测限为 3.3 ng mL-1。该方法用于分析人血浆中的 SLP,回收率为 97.83%。根据 EMA 准则对所研究的方法进行了验证。新方法应用于一项原型药代动力学研究,即给一名健康志愿者服用 800 μg SLP,评估了 AUC0-24、AUC0-∞、Cmax、tmax 和 t1/2 等参数。
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来源期刊
Acta Chromatographica
Acta Chromatographica 化学-分析化学
CiteScore
4.00
自引率
0.00%
发文量
55
审稿时长
2.3 months
期刊介绍: Acta Chromatographica Open Access Acta Chromatographica publishes peer-reviewed scientific articles on every field of chromatography, including theory of chromatography; progress in synthesis and characterization of new stationary phases; chromatography of organic, inorganic and complex compounds; enantioseparation and chromatography of chiral compounds; applications of chromatography in biology, pharmacy, medicine, and food analysis; environmental applications of chromatography; analytical and physico-chemical aspects of sample preparation for chromatography; hyphenated and combined techniques; chemometrics and its applications in separation science.
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