Department of Chemistry and Biochemistry , The Ohio State University , Columbus , Ohio 43210 , United States.
Anal Chem. 2019 Sep 17;91(18):11562-11568. doi: 10.1021/acs.analchem.9b01456. Epub 2019 Sep 6.
Accurate and rapid analysis of complex microsamples are challenging tasks in translational research. Nanoelectrospray ionization (nESI) is the method of choice for analyzing small sample volumes by mass spectrometry (MS), but this technique works well only for polar analytes. Herein, we describe a versatile dual noncontact nESI/nAPCI (nanoatmospheric pressure chemical ionization) source that allows simultaneous detection of both polar and nonpolar analytes in microliter quantities of samples under ambient conditions and without pretreatment. The same device can be activated to enable electrophoretic separation. The noncontact nESI/nAPCI MS platform was applied to analyze different samples, including high sensitive direct analysis of biofluids and the efficient detection of proteins in buffers with high concentration of nonvolatile salts. Excellent linearity, accuracy and limits of detection were achieved for compounds with different chemical properties in different matrices. The high sensitivity, universality, simplicity, and ease of operation make this MS technique promising for use in clinical and forensic applications.
准确、快速分析复杂微样本是转化研究中的挑战性任务。纳喷雾电离(nESI)是通过质谱(MS)分析小体积样本的首选方法,但该技术仅适用于极性分析物。在此,我们描述了一种通用的双非接触 nESI/nAPCI(纳米大气压化学电离)源,该源可在环境条件下无需预处理即可同时检测微升级样本中的极性和非极性分析物。相同的设备可以被激活以实现电泳分离。非接触 nESI/nAPCI-MS 平台已被应用于分析不同的样品,包括生物流体的高灵敏度直接分析以及高浓度非挥发性盐缓冲液中蛋白质的有效检测。不同化学性质和不同基质的化合物均实现了优异的线性、准确性和检测限。该 MS 技术具有高灵敏度、通用性、简单性和易于操作等特点,有望在临床和法医学应用中得到应用。