首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >High-throughput quantitation of amino acids in rat and mouse biological matrices using stable isotope labeling and UPLC-MS/MS analysis
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High-throughput quantitation of amino acids in rat and mouse biological matrices using stable isotope labeling and UPLC-MS/MS analysis

机译:使用稳定同位素标记和UPLC-MS / MS分析对大鼠和小鼠生物基质中的氨基酸进行高通量定量

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摘要

Quantifying amino acids in biological matrices is typically performed using liquid chromatography (LC) coupled with fluorescent detection (FLD), requiring both derivatization and complete baseline separation of all amino acids. Due to its high specificity and sensitivity, the use of UPLC-MS/MS eliminates the derivatization step and allows for overlapping amino acid retention times thereby shortening the analysis time. Furthermore, combining UPLC-MS/MS with stable isotope labeling (e.g., isobaric tag for relative and absolute quantitation, i.e., iTRAQ) of amino acids enables quantitation while maintaining sensitivity, selectivity and speed of analysis. In this study, we report combining UPLC-MS/MS analysis with iTRAQ labeling of amino acids resulting in the elution and quantitation of 44 amino acids within 5 min demonstrating the speed and convenience of this assay over established approaches. This chromatographic analysis time represented a 5-fold improvement over the conventional HPLC-MS/MS method developed in our laboratory. In addition, the UPLC-MS/MS method demonstrated improvements in both specificity and sensitivity without loss of precision. In comparing UPLC-MS/MS and HPLC-MS/MS results of 32 detected amino acids, only 2 amino acids exhibited imprecision (RSD) >15% using UPLC-MS/MS, while 9 amino acids exhibited RSD >15% using HPLC-MS/MS. Evaluating intra- and inter-assay precision over 3 days, the quantitation range for 32 detected amino acids in rat plasma was 0.90-497 mu M, with overall mean intra-day precision of less than 15% and mean inter-day precision of 12%. This UPLC-MS/MS assay was successfully implemented for the quantitative analysis of amino acids in rat and mouse plasma, along with mouse urine and tissue samples, resulting in the following concentration ranges: 0.98-431 mu M in mouse plasma for 32 detected amino acids; 0.62-443 mu M in rat plasma for 32 detected amino acids; 0.44-85901 mu M in mouse liver for 33 detected amino acids; 0.61-1241 mu M in mouse kidney for 37 detected amino acids; and 1.39-1681 mu M in rat urine for 34 detected amino acids. The utility of the assay was further demonstrated by measuring and comparing plasma amino acid levels between prediabetic Zucker diabetic fatty rats (ZDF/Gmi fa/fa) and their lean littermates (ZDF/Gmi fa/?). Significant differences (P < 0.001) in 9 amino acid concentrations were observed, with the majority ranging from a 2- to 5-fold increase in pre-diabetic ZDF rats on comparison with ZDF lean rats, consistent with previous literature reports. (C) 2014 Elsevier B.V. All rights reserved.
机译:通常使用液相色谱(LC)结合荧光检测(FLD)对生物基质中的氨基酸进行定量,这要求所有氨基酸都需要衍生化和完全基线分离。由于其高特异性和灵敏度,使用UPLC-MS / MS消除了衍生步骤,并允许重叠的氨基酸保留时间,从而缩短了分析时间。此外,将UPLC-MS / MS与稳定的氨基酸同位素标记(例如,用于相对和绝对定量的同量异位标签,即iTRAQ)结合使用,可以实现定量,同时保持灵敏度,选择性和分析速度。在这项研究中,我们报告结合了UPLC-MS / MS分析和iTRAQ氨基酸标记,可在5分钟内洗脱和定量44个氨基酸,证明了该方法相对于既定方法的便捷性。该色谱分析时间比我们实验室开发的常规HPLC-MS / MS方法提高了5倍。此外,UPLC-MS / MS方法显示了特异性和灵敏度的提高,而没有损失精度。在比较UPLC-MS / MS和HPLC-MS / MS检测到的32个氨基酸的结果时,使用UPLC-MS / MS仅2个氨基酸的不精确度(RSD)> 15%,而使用HPLC的9个氨基酸的RSD> 15% -MS / MS。评价3天之内的批内和批间精密度,在大鼠血浆中检测到的32种氨基酸的定量范围为0.90-497μM,总体平均日内精度小于15%,平均日间精度为12 %。此UPLC-MS / MS测定法已成功用于大鼠和小鼠血浆以及小鼠尿液和组织样品中氨基酸的定量分析,得出以下浓度范围:血浆中0.98-431μM的32种检测到的氨基酸酸;在大鼠血浆中0.62-443μM,可检测32种氨基酸;小鼠肝脏中0.44-85901μM的检测到的33种氨基酸;小鼠肾脏中的0.61-1241μM含有37种检测到的氨基酸;在大鼠尿液中含有1.39-1681μM尿素,可检测34种氨基酸。通过测量和比较糖尿病前期祖克糖尿病大鼠(ZDF / Gmi fa / fa)和它们的瘦仔猪(ZDF / Gmi fa /α)的血浆氨基酸水平,进一步证明了该测定法的实用性。观察到9个氨基酸浓度存在显着差异(P <0.001),与ZDF瘦大鼠相比,糖尿病前ZDF大鼠的大部分增加2到5倍。 (C)2014 Elsevier B.V.保留所有权利。

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