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在改良的线性四极杆离子阱质谱仪中通过电喷雾电离和离子-分子反应鉴定羧酸官能团。

Identification of the carboxylic acid functionality by using electrospray ionization and ion-molecule reactions in a modified linear quadrupole ion trap mass spectrometer.

作者信息

Habicht Steven C, Vinueza Nelson R, Archibold Enada F, Duan Penggao, Kenttämaa Hilkka I

机构信息

Department of Chemistry, Purdue University, 560 Oval Drive, West Lafayette, Indiana 47907, USA.

出版信息

Anal Chem. 2008 May 1;80(9):3416-21. doi: 10.1021/ac800002h. Epub 2008 Mar 26.

Abstract

A mass spectrometric method has been developed for the identification of the carboxylic acid functional group in analytes evaporated and ionized by electrospray ionization (ESI). This method is based on gas-phase ion-molecule reactions of ammoniated ([M + NH4]+) and sodiated ([M + Na]+) analyte molecules with trimethyl borate (TMB) in a modified linear quadrupole ion trap mass spectrometer. The diagnostic reaction involves addition of the deprotonated analyte to TMB followed by the elimination of methanol. A variety of analytes with different func-tionalities were examined, and this reaction was only observed for molecules containing the carboxylic acid functionality. The selectivity of the reaction is attributed to the acidic hydrogen present in the carboxylic acid group, which provides the proton necessary for the elimination of methanol. The diagnostic products are easily identified based on the m/z value of the product ion, which is 72 Th (thomson) greater than the m/z value of the charged analyte, and also by the character-istic isotope pattern of boron. The applicability of this method for pharmaceutical analysis was demonstrated for three nonsteroidal anti-inflammatory drugs: ibuprofen, naproxen, and ketoprofen.

摘要

已开发出一种质谱方法,用于鉴定通过电喷雾电离(ESI)蒸发和电离的分析物中的羧酸官能团。该方法基于在改进的线性四极杆离子阱质谱仪中,氨化([M + NH4]+)和钠化([M + Na]+)分析物分子与硼酸三甲酯(TMB)的气相离子-分子反应。诊断反应包括将去质子化的分析物加到TMB上,随后消除甲醇。对具有不同官能团的多种分析物进行了检测,且仅在含有羧酸官能团的分子中观察到该反应。该反应的选择性归因于羧酸基团中存在的酸性氢,其提供了消除甲醇所需的质子。基于产物离子的m/z值(比带电分析物的m/z值大72 Th(汤姆森))以及硼的特征同位素模式,可轻松鉴定诊断产物。该方法对三种非甾体抗炎药:布洛芬、萘普生和酮洛芬的药物分析适用性得到了证明。

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