Laboratory of Environmental Chemistry, The Chemistry Institute, The Hebrew University of Jerusalem, Jerusalem, 91904, Israel.
Anal Chem. 2009 Oct 15;81(20):8396-404. doi: 10.1021/ac901285m.
A methodology for online preconcentration of analytes and their subsequent electrochemically induced delivery to an online electrospray mass spectrometer is introduced. The approach is based on electrodeposition of an active metallic layer, silver deposit in this particular case, subsequent specific accumulation of the target analyte by electrochemical or chemical means onto the active layer, and finally oxidative electrostripping of the conductive layer along with the supported analyte to an online mass spectrometer. We demonstrate the new concept by selective electrochemical deposition of homocysteine and other organothiols directly on the working electrode of a miniature flow cell. The same approach was extended to the conjugation of the target analyte (avidin as a test case) to a thiolated ligand (biotin in this case) that was electrodeposited on the silver coated surface. Electrostripping of the silver dissolves the target species and allows their delivery to an online ESI-MS. Furthermore, the dissolved silver ions promote ionization, and its characteristic isotopic pattern assists in the identification of the target analyte.
介绍了一种用于在线浓缩分析物及其随后电化学诱导递送至在线电喷雾质谱仪的方法。该方法基于活性金属层的电沉积,在这种特殊情况下是银沉积物,随后通过电化学或化学手段将目标分析物特异性地累积到活性层上,最后将导电层与负载的分析物一起氧化电剥离到在线质谱仪中。我们通过将同型半胱氨酸和其他有机硫醇直接电化学沉积在微型流动池的工作电极上来证明新的概念。同样的方法也扩展到了将目标分析物(以亲和素作为测试案例)与硫醇配体(在此情况下为生物素)结合,该硫醇配体被电沉积在涂银的表面上。银的电剥离溶解了目标物质,并允许将其递送至在线 ESI-MS。此外,溶解的银离子促进了离子化,其特征同位素模式有助于目标分析物的鉴定。