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 >Development and validation of a fast and sensitive UHPLC-DAD assay for the quantification of nitrofurantoin in plasma and urine
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Development and validation of a fast and sensitive UHPLC-DAD assay for the quantification of nitrofurantoin in plasma and urine

机译:快速敏感的UHPLC-DAD测定对血浆和尿液中硝基菌素定量的快速敏感UHPLC-DAD测定的开发和验证

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Nitrofurantoin is an antimicrobial drug that has been used in the treatment of lower urinary tract infections for more than 50 years. Despite its long use, surprisingly little is known of the pharmacokinetics of nitrofurantoin, whereas this is essential to optimize patient treatment. We developed a novel analytical method for the quantification of nitrofurantoin in plasma and urine using ultra-high performance liquid chromatography and diode array detection to allow pharmacokinetic studies in these two matrices. The sample preparation method consisted of protein precipitation for plasma and liquid-liquid extraction for urine. 100 mu L was needed for the sample preparation. Furazolidone was used as internal standard. Gradient chromatographic separation was performed on a HSS-T3 column. UV detection was performed at a wavelength of 369 nm. The analysis time was 5 min. The method was successfully validated according to the FDA-guidelines (2018). Linearity was confirmed over a concentration range from 50 to 1250 mu g/L in plasma and from 4 to 200 mg/L in urine (r(2) > 0.95). Validation results of five QC concentrations for plasma and urine, respectively, are for within-day accuracy <+/- 13% in both matrices, for between-day accuracy <+/- 7% and <+/- 9%, for within-day precision <10% and <4% and for between-day precision <10% and <5%. Plasma samples are stable for seven days at 4 degrees C, and for 2 years at -20 degrees C and -80 degrees C. Urine samples are stable for at least seven days at 4 degrees C and at room temperature and for 2 years at -20 degrees C andat 80 degrees C, except from the lower concentrated samples, which are only stable at -80 degrees C. All samples were kept from day-light using amber colored glassware. The presented method meets all validation requirements and was successfully used in a clinical study where the pharmacokinetics of nitrofurantoin were investigated in healthy volunteers. The easy sample preparation method and the short analysis time make this method suitable for use during routine clinical practice to study the pharmacokinetics of nitrofurantoin. (C) 2019 Elsevier B.V. All rights reserved.
机译:硝基呋喃素是一种抗微生物药物,用于治疗尿路患者50多年以上。尽管使用了很长时间,但令人惊讶的是含有乳嘌呤的药代动力学,而这对于优化患者治疗至关重要。我们开发了一种新的分析方法,用于使用超高效液相色谱和二极管阵列检测来定量血浆和尿液中硝化呋喃素的分析方法,以允许这两个矩阵中的药代动力学研究。样品制备方法由蛋白质沉淀组成,用于尿液的血浆和液液萃取。样品制备需要100μl。呋喃唑酮被用作内标。在HSS-T3柱上进行梯度色谱分离。在波长为369nm的波长下进行UV检测。分析时间为5分钟。根据FDA-G指导(2018年)成功验证了该方法。在血浆中的50至1250μg/ L的浓度范围内确认线性度,尿液中的4-200mg / L(R(2)> 0.95)。血浆和尿液的五个QC浓度的验证结果分别在两种矩阵中的日子精度<+/- 13%,在白天的精度<+/- 7%和<+/- 9% -day精度<10%和<4%,并且在日间精度<10%和<5%。等离子体样品在4℃下稳定七天,在-20℃和-80℃下持续2年。尿液样品在4℃下稳定七天,在室温下稳定,在 - 20摄氏度80℃,除了较低浓缩的样品之外,其仅在-80℃下稳定。使用琥珀色玻璃器皿从日光中保留所有样品。呈现的方法符合所有验证要求,并成功用于临床研究,其中在健康志愿者中调查了呋喃啉的药代动力学。易于样品制备方法和简短的分析时间使该方法适用于常规临床实践期间用于研究乳嘌呤素的药代动力学。 (c)2019 Elsevier B.v.保留所有权利。

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