Department of Chemistry, University of Alberta, Edmonton, Alberta, Canada.
Anal Chim Acta. 2012 Oct 31;750:161-72. doi: 10.1016/j.aca.2012.05.006. Epub 2012 May 15.
Acylglycines play a crucial regulatory and detoxification role in the accumulation of the corresponding acyl CoA esters and are an important class of metabolites in the diagnoses of inborn errors of metabolism. Sensitive quantification of a large number of acylglycines not only improves diagnosis but also enables the discovery of potential new biomarkers of diseases. We report an ultra-high performance liquid chromatography tandem mass spectrometry (UPLC-MS) method for quantifying acylglycines in human urine with high sensitivity. This method is based on the use of a newly developed isotope labeling reagent, p-dimethylaminophenacyl (DmPA) bromide, to label acylglycines to improve detection sensitivity. Eighteen acylglycines, namely acetylglycine, propionylglycine, isobutyrylglycine, butyrylglycine, 4-hydroxyphenylacetylglycine, 2-furoylglycine, tiglylglycine, 2-methybutyrylglycine, 3-methylcrotonylglycine, isovalerylglycine, valerylglycine, hexanoylglycine, phenylacetylglycine, phenylpropionylglycine, glutarylglycine, heptanoylglycine, octanoylglycine and suberylglycine, were measured. This method uses calibration standards prepared in surrogate matrix (un-derivatized urine) and stable-isotope labeled analytes as the internal standards. The analysis was carried out in the positive ion detection mode using multiple reaction monitoring (MRM) survey scans. The calibration curves were validated over the range of 1.0-500 nM. The method achieved a lower limit of quantitation (LLOQ) of 1-5 nM for all analytes, as measured by the standard derivations associated with calibration curves and confirmed in surrogate matrix; the signal-to-noise ratio at LLOQ ranged from 12.50 to 156.70. Both accuracy (% RE or relative error) and precision (% CV) were <15%. Matrix effects were minimized using the surrogate matrix. All eighteen analytes were stable in urine for at least 5h at room temperature, autosampler (4 °C) for 24 h, 7 weeks at -20 °C and after three freeze/thaw cycles. This surrogate matrix approach was validated using a standard addition experiment. As an example of applications, the endogenous concentrations of all eighteen analytes in urine samples of 20 healthy individuals collected in three consecutive days (i.e., 60 samples) were determined; there was no significant correlation found between the acylglycine profile and gender or body mass indices.
酰基甘氨酸在相应酰基辅酶 A 酯的积累中起着关键的调节和解毒作用,是代谢性疾病先天错误诊断中的一类重要代谢物。大量酰基甘氨酸的灵敏定量不仅提高了诊断水平,而且还能发现潜在的新疾病生物标志物。我们报道了一种超高效液相色谱串联质谱(UPLC-MS)法,用于定量检测人尿液中的酰基甘氨酸,具有较高的灵敏度。该方法基于使用新开发的同位素标记试剂对二甲基氨基苯甲酰(DmPA)溴化物标记酰基甘氨酸,以提高检测灵敏度。共测定了 18 种酰基甘氨酸,即乙酰甘氨酸、丙酰甘氨酸、异丁酰甘氨酸、丁酰甘氨酸、4-羟基苯乙酰甘氨酸、2-呋喃酰甘氨酸、丁烯酰甘氨酸、2-甲基丁酰甘氨酸、3-甲基巴豆酰甘氨酸、异戊酰甘氨酸、缬酰甘氨酸、己酰甘氨酸、苯乙酰甘氨酸、苯丙酰甘氨酸、戊二酰甘氨酸、庚酰甘氨酸、辛酰甘氨酸和丁烯酰甘氨酸。该方法使用在替代基质(未衍生尿液)中制备的校准标准品和稳定同位素标记的分析物作为内标。分析采用正离子检测模式,使用多重反应监测(MRM)全扫描。校准曲线在 1.0-500 nM 范围内进行验证。该方法通过与校准曲线相关的标准偏差测量,在替代基质中确认,所有分析物的定量下限(LLOQ)均为 1-5 nM;LLOQ 时的信噪比范围为 12.50-156.70。准确度(%RE 或相对误差)和精密度(%CV)均<15%。使用替代基质最小化了基质效应。在室温下,尿液中所有 18 种分析物在室温下至少稳定 5 小时,自动进样器(4°C)24 小时,-20°C 下 7 周,以及经过三次冻融循环。该替代基质方法通过标准添加实验进行了验证。作为应用实例,在连续三天(即 60 个样本)收集的 20 名健康个体的尿液样本中,测定了所有 18 种分析物的内源性浓度;未发现酰基甘氨酸图谱与性别或体重指数之间存在显著相关性。