National Synchrotron Radiation Laboratory , University of Science and Technology of China , Hefei 230029 , China.
Hefei National Laboratory for Physical Sciences at the Microscale, School of Life Sciences , University of Science and Technology of China , Hefei 230026 , China.
Anal Chem. 2019 May 21;91(10):6616-6623. doi: 10.1021/acs.analchem.9b00520. Epub 2019 Mar 28.
Desorption electrospray ionization (DESI) mass spectrometry imaging (MSI) can simultaneously record the 2D distribution of polar biomolecules in tissue slices at ambient conditions. However, sensitivity of DESI-MSI for nonpolar compounds is restricted by low ionization efficiency and strong ion suppression. In this study, a compact postphotoionization assembly combined with DESI (DESI/PI) was developed for imaging polar and nonpolar molecules in tissue sections by switching off/on a portable krypton lamp. Compared with DESI, higher signal intensities of nonpolar compounds could be detected with DESI/PI. To further increase the ionization efficiency and transport of charged ions of DESI/PI, the desorption solvent composition and gas flow in the ionization tube were optimized. In mouse brain tissue, more than 2 orders of magnitude higher signal intensities for certain neutral biomolecules like creatine, cholesterol, and GalCer lipids were obtained by DESI/PI in the positive ion mode, compared with that of DESI. In the negative ion mode, ion yields of DESI/PI for glutamine and some lipids (HexCer, PE, and PE-O) were also increased by several-fold. Moreover, nonpolar constituents in plant tissue, such as catechins in leaf shoots of tea, could also be visualized by DESI/PI. Our results indicate that DESI/PI can expand the application field of DESI to nonpolar molecules, which is important for comprehensive imaging of biomolecules in biological tissues with moderate spatial resolution at ambient conditions.
解吸电喷雾电离(DESI)质谱成像(MSI)可以在环境条件下同时记录组织切片中极性生物分子的 2D 分布。然而,DESI-MS 对非极性化合物的灵敏度受到低离化效率和强离子抑制的限制。在这项研究中,开发了一种紧凑的后光解电离组件与 DESI(DESI/PI)相结合,通过关闭/打开便携式氪灯来对组织切片中的极性和非极性分子进行成像。与 DESI 相比,DESI/PI 可以检测到非极性化合物的信号强度更高。为了进一步提高 DESI/PI 的离化效率和荷电离子的传输,优化了离化管中的解吸溶剂组成和气体流量。在小鼠脑组织中,与 DESI 相比,DESI/PI 在正离子模式下获得了某些中性生物分子(如肌酸、胆固醇和 GalCer 脂质)的信号强度提高了 2 个数量级以上。在负离子模式下,DESI/PI 对谷氨酰胺和一些脂质(HexCer、PE 和 PE-O)的离子产率也提高了几倍。此外,植物组织中的非极性成分,如茶叶芽叶中的儿茶素,也可以通过 DESI/PI 进行可视化。我们的结果表明,DESI/PI 可以将 DESI 的应用领域扩展到非极性分子,这对于在环境条件下以中等空间分辨率对生物组织中的生物分子进行全面成像非常重要。