García M C, Hogenboom A C, Zappey H, Irth H
Department of Analytical Chemistry and Applied Spectroscopy, Vrije Universiteit, Amsterdam, The Netherlands.
J Chromatogr A. 2002 May 31;957(2):187-99. doi: 10.1016/s0021-9673(02)00345-x.
Various buffers (ammonium acetate, ammonium formate, and ammonium hydrogencarbonate), acids (formic acid, acetic acid, heptafluorobutyric acid, and trifluoroacetic acid), and bases (ammonium hydroxide and morpholine) covering the range from 2 to 11.5 have been investigated for their performance in the separation of proteins by reversed-phase liquid chromatography (RPLC) and in their detection by electrospray mass spectrometry (ESI-MS). These additives were first tested for the detection of standard proteins by ESI-MS by flow-injection analysis (FIA). Those additives yielding the highest signals were employed for the separation of standard proteins by using three different reversed-phase columns: two C18 columns (4.6 mm I.D. and 2.1 mm I.D.) and one perfusion column (2 mm I.D.). The sensitivity of the LC-MS system was evaluated with the column giving the best results and with those LC eluents enabling the LC separation of the proteins and also yielding the highest MS signals. For that purpose, calibration curves were compared for both LC-MS and FIA-MS. Formic acid was the additive yielding the highest responses in FIA-MS and trifluoroacetic acid (TFA) gave the best separation and recovery of the proteins. However, problems related to poor recovery of the proteins in the column when formic acid was used and the significant signal suppression observed in MS when TFA was employed, made neither of them suitable for the sensitive detection of the proteins in LC-MS.
已对覆盖2至11.5范围的各种缓冲液(乙酸铵、甲酸铵和碳酸氢铵)、酸(甲酸、乙酸、七氟丁酸和三氟乙酸)和碱(氢氧化铵和吗啉)在反相液相色谱(RPLC)分离蛋白质以及电喷雾质谱(ESI-MS)检测中的性能进行了研究。这些添加剂首先通过流动注射分析(FIA)用于ESI-MS检测标准蛋白质。那些产生最高信号的添加剂被用于使用三种不同的反相柱分离标准蛋白质:两根C18柱(内径4.6 mm和2.1 mm)和一根灌注柱(内径2 mm)。使用给出最佳结果的柱以及那些能够实现蛋白质的液相色谱分离并产生最高质谱信号的液相色谱洗脱液来评估液相色谱-质谱系统的灵敏度。为此,比较了液相色谱-质谱和流动注射分析-质谱的校准曲线。甲酸是在流动注射分析-质谱中产生最高响应的添加剂,而三氟乙酸(TFA)对蛋白质的分离和回收率最佳。然而,使用甲酸时柱中蛋白质回收率低以及使用TFA时质谱中观察到显著的信号抑制等问题,使得它们都不适用于液相色谱-质谱中蛋白质的灵敏检测。