Jurchen John C, Rubakhin Stanislav S, Sweedler Jonathan V
Department of Chemistry, University of Illinois, Urbana, Illinois 61801, USA.
J Am Soc Mass Spectrom. 2005 Oct;16(10):1654-9. doi: 10.1016/j.jasms.2005.06.006.
The feasibility of matrix-assisted laser desorption/ionization mass spectrometry (MALDI-MS) imaging of features smaller than the laser beam size has been demonstrated. The method involves the complete ablation of the MALDI matrix coating the sample at each sample position and moving the sample target a distance less than the diameter of the laser beam before repeating the process. In the limit of complete sample ablation, acquiring signal from adjacent positions spaced by distances smaller than the sample probe enhances image resolution as the measured analyte signal only arises from the overlap of the laser beam size and the non-ablated sample surface. Image acquisition of features smaller than the laser beam size has been demonstrated with peptide standards deposited on electron microscopy calibration grids and with neuropeptides originating from single cells. The presented MS imaging technique enables approximately 25 microm imaging spatial resolution using commercial MALDI mass spectrometers having irregular laser beam sizes of several hundred micron diameters. With appropriate sampling, the size of the laser beam is not a strict barrier to the attainable MALDI-MS imaging resolution.
已证明对小于激光束尺寸的特征进行基质辅助激光解吸/电离质谱(MALDI-MS)成像的可行性。该方法包括在每个样品位置完全烧蚀覆盖样品的MALDI基质,并在重复该过程之前将样品靶移动小于激光束直径的距离。在完全样品烧蚀的极限情况下,从间距小于样品探针的相邻位置采集信号可提高图像分辨率,因为所测量的分析物信号仅来自激光束尺寸与未烧蚀样品表面的重叠。已通过沉积在电子显微镜校准网格上的肽标准品以及源自单细胞的神经肽证明了对小于激光束尺寸的特征进行图像采集。所提出的MS成像技术使用具有数百微米直径不规则激光束尺寸的商用MALDI质谱仪可实现约25微米的成像空间分辨率。通过适当的采样,激光束的尺寸并非实现MALDI-MS成像分辨率的严格障碍。