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采用大气压光电离的液相色谱/质谱法测定苹果汁中的展青霉素

Liquid chromatography/mass spectrometric determination of patulin in apple juice using atmospheric pressure photoionization.

作者信息

Takino Masahiko, Daishima Shigeki, Nakahara Taketoshi

机构信息

Yokogawa Analytical Systems Inc. 2-11-13, Nakacho, Musashino-shi, Tokyo 180-0006, Japan.

出版信息

Rapid Commun Mass Spectrom. 2003;17(17):1965-72. doi: 10.1002/rcm.1136.

Abstract

This paper describes a comparison between atmospheric pressure chemical ionization (APCI) and the recently introduced atmospheric pressure photoionization (APPI) technique for the liquid chromatography/mass spectrometric (LC/MS) determination of patulin in clear apple juice. A column switching technique for on-line extraction of clear apple juice was developed. The parameters investigated for the optimization of APPI were the ion source parameters fragmentor voltage, capillary voltage, and vaporizer temperature, and also mobile phase composition and flow rate. Furthermore, chemical noise and signal suppression of analyte signals due to sample matrix interference were investigated for both APCI and APPI. The results indicated that APPI provides lower chemical noise and signal suppression in comparison with APCI. The linear range for patulin in apple juice (correlation coefficient >0.999) was 0.2-100 ng mL(-1). Mean recoveries of patulin in three apple juices ranged from 94.5 to 103.2%, and the limit of detection (S/N = 3), repeatability and reproducibility were 1.03-1.50 ng mL(-1), 3.9-5.1% and 7.3-8.2%, respectively. The total analysis time was 10.0 min.

摘要

本文描述了常压化学电离(APCI)与最近推出的常压光电离(APPI)技术在液相色谱/质谱(LC/MS)测定澄清苹果汁中展青霉素方面的比较。开发了一种用于在线萃取澄清苹果汁的柱切换技术。为优化APPI而研究的参数包括离子源参数(碎裂电压、毛细管电压和蒸发器温度),以及流动相组成和流速。此外,还研究了APCI和APPI因样品基质干扰而产生的化学噪声和分析物信号抑制情况。结果表明,与APCI相比,APPI具有更低的化学噪声和信号抑制。苹果汁中展青霉素的线性范围(相关系数>0.999)为0.2 - 100 ng mL⁻¹。三种苹果汁中展青霉素的平均回收率为94.5%至103.2%,检测限(S/N = 3)、重复性和再现性分别为1.03 - 1.50 ng mL⁻¹、3.9 - 5.1%和7.3 - 8.2%。总分析时间为10.0分钟。

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