Department of Chemistry, Stanford University, Stanford, CA-94305, USA.
Department of Chemistry, Fudan University, Shanghai, 200016, China.
Angew Chem Int Ed Engl. 2023 Feb 20;62(9):e202216969. doi: 10.1002/anie.202216969. Epub 2023 Jan 24.
We present immunoassay-based desorption electrospray ionization mass spectrometry imaging (immuno-DESI-MSI) to visualize functional macromolecules such as drug targets and cascade signaling factors. A set of boronic acid mass tags (BMTs) were synthesized to label antibodies as MSI probes. The boronic ester bond is employed to cross-link the BMT with the galactosamine-modified antibody. The BMT can be released from its tethered antibody by ultrafast cleavage of the boronic ester bond caused by the acidic condition of sprayed DESI microdroplets containing water. The fluorescent moiety enables the BMT to work in both optical and MS imaging modes. The positively charged quaternary ammonium group enhances the ionization efficiency. The introduction of the boron element also makes mass tags readily identified because of its unique isotope pattern. Immuno-DESI-MSI provides an appealing strategy to spatially map macromolecules beyond what can be observed by conventional DESI-MSI, provided antibodies are available to the targeted molecules of interest.
我们提出了基于免疫测定的解吸电喷雾电离质谱成像(immuno-DESI-MSI),以可视化药物靶点和级联信号因子等功能大分子。我们合成了一组硼酸质谱标签(BMT)来标记抗体作为 MSI 探针。硼酸酯键用于将 BMT 与半乳糖胺修饰的抗体交联。硼酸酯键可以通过含有水的喷雾 DESI 微液滴的酸性条件下的超快断裂从其连接的抗体上释放出来。荧光部分使 BMT 能够在光学和 MS 成像模式下工作。带正电荷的季铵基团提高了离子化效率。硼元素的引入也使得质量标记物很容易被识别,因为其具有独特的同位素模式。免疫 DESI-MSI 提供了一种有吸引力的策略,可以在空间上绘制传统 DESI-MSI 无法观察到的大分子图谱,前提是有针对感兴趣的靶分子的抗体。