Zhang Mei, Lin Fankai, Xu Jianguo, Xu Wei
†National Institute for Communicable Disease Control and Prevention, Chinese Center for Disease Control and Prevention, Beijing, China, 102206.
‡State Key Laboratory for Infectious Disease Prevention and Control, Beijing, China, 102206.
Anal Chem. 2015 Mar 17;87(6):3123-8. doi: 10.1021/acs.analchem.5b00467. Epub 2015 Mar 3.
The ability of rapid biomarker quantitation in raw biological samples would expand the application of mass spectrometry in clinical diagnosis. Up until now, the conventional chromatography-mass spectrometry method is time-consuming in both sample preparation and chromatography separation processes, while ambient ionization methods normally suffer from sensitivity. The membrane electrospray ionization (MESI) introduced in this study could not only achieve sensitive biomolecule quantitation, but also minimize the sample handling process. As a unique feature of MESI, both vertical and horizontal chemical separations could be achieved in real-time. With the capability of mass-selectively minimizing matrix effects from salts, small molecules, and macromolecules, ultrasensitive detection of cytochrome C (>500-fold sensitivity improvement) in raw urine samples was demonstrated in less than 20 min.
在原始生物样品中快速进行生物标志物定量的能力将扩大质谱在临床诊断中的应用。到目前为止,传统的色谱 - 质谱方法在样品制备和色谱分离过程中都很耗时,而常压电离方法通常灵敏度较低。本研究中引入的膜电喷雾电离(MESI)不仅可以实现生物分子的灵敏定量,还能最大限度地减少样品处理过程。作为MESI的一个独特特性,可以实时实现垂直和水平化学分离。凭借能够质量选择性地最小化来自盐、小分子和大分子的基质效应的能力,在不到20分钟的时间内就证明了在原始尿液样品中对细胞色素C的超灵敏检测(灵敏度提高超过500倍)。