Chen Hsin-Chang, Wu Charlene, Wu Kuen-Yuh
Institute of Occupational Medicine and Industrial Hygiene, College of Public Health, National Taiwan University, No. 17, ShiuJou Road, Taipei 10055, Taiwan; National Environmental Health Research Center, National Health Research Institutes, No. 35 , Keyan Road, Zhunan, Miaoli County 35053, Taiwan.
Institute of Occupational Medicine and Industrial Hygiene, College of Public Health, National Taiwan University, No. 17, ShiuJou Road, Taipei 10055, Taiwan.
Talanta. 2015 May;136:9-14. doi: 10.1016/j.talanta.2014.11.021. Epub 2014 Nov 18.
A rapid and simple on-line solid-phase extraction coupled with isotope dilution-liquid chromatography-tandem mass spectrometry (SPE-ID-LC-MS/MS) method was developed to quantitate maleic acid in serum and urine of SpragueDawley (SD) rats. The aforementioned biological samples were spiked with (13)C2-maleic acid, vigorously vortexed, added with acetonitrile to precipitate proteins, and then injected into the on-line SPE-LC-MS/MS system for quantification. Upon validation, this method demonstrated excellent feasibility and sensitivity: calibration curves for maleic acid in serum and urine display excellent linearity with the coefficient of determination (R(2)) greater than 0.999; the limits of detection and quantitation (LOD and LOQ) for maleic acid were determined at 0.2 and 0.5μg L(-1), respectively. Additionally, intra-day accuracy for maleic acid in serum and urine samples ranged from 94.0% to 100.2% and 101.3% to 104.4%, respectively. Furthermore, inter-day accuracy ranged from 93.6% to 101.0% and from 102.3% to 111.4% in serum and urine samples, respectively. Intra-day precision %RSD of maleic acid in serum and urine samples was 13.8% or less, whereas the inter-day precision was 6.1% or less. The matrix effects were not found to be statistically significant (p=0.9145 and p=0.5378, correspondingly) based on the calculations of recovery functions. The collected serum and urine samples were analyzed using SPE-ID-LC-MS/MS. Our results reveal trace levels of maleic acid in the control rats, demonstrating that this method is capable of analyzing background levels of contaminants in biofluids with excellent sensitivity and specificity at part-per-billion levels concentrations in complex matrices.
建立了一种快速简便的在线固相萃取-同位素稀释-液相色谱-串联质谱法(SPE-ID-LC-MS/MS),用于定量测定Sprague-Dawley(SD)大鼠血清和尿液中的马来酸。上述生物样品加入(13)C2-马来酸,剧烈涡旋,加入乙腈沉淀蛋白质,然后注入在线SPE-LC-MS/MS系统进行定量分析。经验证,该方法具有良好的可行性和灵敏度:血清和尿液中马来酸的校准曲线显示出良好的线性,决定系数(R(2))大于0.999;马来酸的检测限和定量限(LOD和LOQ)分别为0.2和0.5μg L(-1)。此外,血清和尿液样品中马来酸的日内准确度分别为94.0%至100.2%和101.3%至104.4%。此外,血清和尿液样品的日间准确度分别为93.6%至101.0%和102.3%至111.4%。血清和尿液样品中马来酸的日内精密度%RSD为13.8%或更低,而日间精密度为6.1%或更低。根据回收率函数计算,未发现基质效应具有统计学意义(相应地,p=0.9145和p=0.5378)。使用SPE-ID-LC-MS/MS对收集的血清和尿液样品进行分析。我们的结果显示对照大鼠中存在痕量水平的马来酸,表明该方法能够在复杂基质中以十亿分之一水平的浓度,以优异的灵敏度和特异性分析生物流体中污染物的背景水平。