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类视黄醇的高效液相色谱-电喷雾质谱分析

High-performance liquid chromatography-electrospray mass spectrometry of retinoids.

作者信息

Van Breemen R B, Huang C R

机构信息

Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, University of Illinois at Chicago, 60612-7231, USA.

出版信息

FASEB J. 1996 Jul;10(9):1098-101. doi: 10.1096/fasebj.10.9.8801173.

DOI:10.1096/fasebj.10.9.8801173
PMID:8801173
Abstract

High-performance liquid chromatography (HPLC)-electrospray mass spectrometry (LC-MS) was used to analyze vitamin A-active retinoids including retinoic acid, retinol, retinal, and retinyl acetate. Unlike previous LC-MS methods such as negative ion electron capture chemical ionization, no derivatization of retinoic acid was required. HPLC separations were carried out on a C30 reversed phase column with gradient elution using mobile phases containing water, methanol, and methyl-tert-butyl ether. Ammonium acetate (5 mM) was added to the mobile phase to facilitate ion pair formation during reversed phase HPLC of retinoic acid, and acetic acid (0.5% v/v) was added to the mobile phase to enhance protonation during LC-MS analysis of nonacidic retinoids. During negative ion electrospray, retinoic acid formed abundant deprotonated molecules, [M-H]-, of m/z 299 without significant fragmentation. Although retinol, retinal, and retinyl acetate did not ionize during negative ion electrospray, the positive ion electrospray mass spectra of these retinoids showed an abundant protonated molecule of m/z 285 for retinal and base peaks of m/z 269 corresponding to elimination of water or acetic acid from the protonated molecules of retinol or retinyl acetate, respectively. No ions from retinoic acid were detected during positive ion electrospray. Limits of detection for retinoic acid, retinal, retinol, and retinyl acetate were 23 pg, 1.0 ng, 0.5 ng, and 10 ng, respectively.

摘要

采用高效液相色谱(HPLC)-电喷雾质谱(LC-MS)分析维生素A活性类视黄醇,包括视黄酸、视黄醇、视黄醛和醋酸视黄酯。与之前的LC-MS方法(如负离子电子捕获化学电离)不同,视黄酸无需衍生化。HPLC分离在C30反相柱上进行,使用含有水、甲醇和甲基叔丁基醚的流动相进行梯度洗脱。向流动相中加入醋酸铵(5 mM)以促进视黄酸反相HPLC过程中的离子对形成,并向流动相中加入醋酸(0.5% v/v)以增强非酸性类视黄醇LC-MS分析过程中的质子化。在负离子电喷雾过程中,视黄酸形成了丰富的去质子化分子[M-H]-,m/z为299,且无明显碎片化。虽然视黄醇、视黄醛和醋酸视黄酯在负离子电喷雾过程中不会电离,但这些类视黄醇的正离子电喷雾质谱显示,视黄醛有一个丰富的m/z为285的质子化分子,视黄醇或醋酸视黄酯的质子化分子分别对应于消除水或醋酸的m/z为269的基峰。在正离子电喷雾过程中未检测到视黄酸的离子。视黄酸、视黄醛、视黄醇和醋酸视黄酯的检测限分别为23 pg、1.0 ng、0.5 ng和10 ng。

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