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Development and Validation of a Rapid High-Performance Liquid Chromatography–Tandem Mass Spectrometric Method for Determination of Folic Acid in Human Plasma

机译:快速高效液相色谱 - 串联质谱法的发展与验证,用于测定人血浆中叶酸的叶酸

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摘要

There are health concerns associated with increased folic acid intake from fortified food and supplements. Existing analytical methods, however, which can be employed to carry out epidemiological and bioavailability studies for folic acid involve laborious sample preparation and/or lengthy chromatographic analysis. In this paper we describe a simple, rapid, and sensitive high-performance liquid chromatography–electrospray ionisation-tandem mass spectrometry (HPLC–ESI-MS/MS) method for determination of unmetabolised folic acid in human plasma using folic acid-d4 as an internal standard. The method required only a simple sample preparation step of protein precipitation and had a total run time of 3.5 min, which is the shortest run time reported to date for HPLC–MS/MS method employed for quantifying folic acid in plasma. The analytes were separated on a C18 column (3 µm; 50 × 3.00 mm) using an isocratic mobile phase consisting of ammonium acetate (1 mM)-acetic acid-acetonitrile (9.9:0.1:90, v/v/v). The method was fully validated in terms of accuracy, precision, linearity, selectivity, recovery, matrix effect, and stability. The short run time and the minimal sample preparation makes the method a valuable tool for performing high-throughput analyses. To demonstrate the applicability of the method in real conditions, it was applied successfully in a bioavailability study for the determination of unmetabolised folic acid levels in vivo in human plasma after oral administration of folic acid.
机译:与强化食品和补充剂增加了叶酸摄入量的健康问题。然而,现有的分析方法可以用于开展叶酸的流行病学和生物利用度研究涉及艰苦的样品制备和/或冗长的色谱分析。在本文中,我们描述了一种简单,快速,敏感的高效液相色谱 - 电喷雾电离电离 - 串联质谱(HPLC-ESI-MS / MS)方法,用于使用叶酸-D4测定人血浆中未代谢的叶酸。内标。该方法仅需要一种简单的蛋白质沉淀的样品制备步骤,并且具有3.5分钟的总运行时间,这是迄今为止用于定量血浆中叶酸的HPLC-MS / MS方法的最短运行时间。使用由乙酸铵(1mM) - 乙酸乙酸 - 乙腈(9.9:0.1:90,v / v / v),在C18柱(3μm; 50×3.00mm)上分离分析物。该方法在准确性,精度,线性,选择性,恢复,矩阵效应和稳定性方面完全验证。短跑时间和最小的样品制备使方法成为用于执行高通量分析的有价值的工具。为了证明该方法在真实条件下的适用性,在口服叶酸口服施用后,在生物利用度研究中成功地应用了用于测定人血浆中体内未代谢的叶酸水平。

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