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通过化学计量学对未衍生化的人尿液氨基酸进行液相色谱-三重四极杆质谱分析的多目标优化。

Multiobjective optimization of liquid chromatography-triple-quadrupole mass spectrometry analysis of underivatized human urinary amino acids through chemometrics.

机构信息

Department of Chemical Biology, Faculty of Biotechnology, University of Wrocław, F. Joliot-Curie 14a, 50-383, Wrocław, Poland.

Analytical Unit, Instituto de Investigación Sanitaria La Fe, Ave. Fernando Abril Martorell 106, 46026, Valencia, Spain.

出版信息

Anal Bioanal Chem. 2018 Jul;410(18):4275-4284. doi: 10.1007/s00216-018-1083-x. Epub 2018 May 7.

Abstract

Optimization of instrumental settings of a triple-quadrupole mass analyzer was performed by Box-Behnken design, support vector machines, and a Pareto-optimality approach. This time-saving, stepped chemometric strategy was used to model the signal response of underivatized human urinary amino acids. Drying gas flow, nebulizer pressure, sheath gas flow, and capillary voltage settings were exhaustively studied beyond the parameters conventionally optimized in triple-quadrupole devices (multiple reaction monitoring transitions, fragmentor and collision energy voltages). The results indicate that the best signal response for high-abundance and low-abundance underivatized amino acids was achieved with drying gas flow of 9 L/min, nebulizer pressure of 60 psi, sheath gas flow of 13 L/min, and capillary voltage of 3000 V. Compared with the widely standardized settings tested, chemometric analysis led to signal intensities 74% and 68% higher for high-abundance and low-abundance amino acids, respectively. The flexibility, speed, and efficiency of this method allows its affordable implementation in all mass spectrometry-based research to obtain superior results compared with those obtained with conventionally optimized mass spectrometry instrumental parameters.

摘要

采用 Box-Behnken 设计、支持向量机和 Pareto 最优方法对三重四极杆质谱仪的仪器参数进行了优化。这种节省时间的分步化学计量学策略用于对未衍生的人尿液氨基酸的信号响应进行建模。除了三重四极杆设备中常规优化的参数(多重反应监测转换、碎裂器和碰撞能量电压)之外,还对干燥气流、雾化器压力、鞘气流量和毛细管电压进行了详尽的研究。结果表明,干燥气流为 9 L/min、雾化器压力为 60 psi、鞘气流量为 13 L/min、毛细管电压为 3000 V 时,可获得高丰度和低丰度未衍生氨基酸的最佳信号响应。与测试的广泛标准化设置相比,化学计量学分析分别使高丰度和低丰度氨基酸的信号强度提高了 74%和 68%。该方法的灵活性、速度和效率使其能够在所有基于质谱的研究中以可承受的价格实施,从而获得比传统优化的质谱仪器参数获得的结果更优。

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