Spectroglyph LLC , Kennewick, Washington 99338, United States.
M4I, The Maastricht Multimodal Molecular Imaging Institute, Maastricht University , 6229 ER Maastricht, The Netherlands.
Anal Chem. 2017 Jul 18;89(14):7493-7501. doi: 10.1021/acs.analchem.7b01168. Epub 2017 Jun 28.
Matrix-Assisted Laser Desorption Ionization, MALDI, has been increasingly used in a variety of biomedical applications, including tissue imaging of clinical tissue samples, and in drug discovery and development. These studies strongly depend on the performance of the analytical instrumentation and would drastically benefit from improved sensitivity, reproducibility, and mass/spatial resolution. In this work, we report on a novel combined MALDI/ESI interface, which was coupled to different Orbitrap mass spectrometers (Elite and Q Exactive Plus) and extensively characterized with peptide and protein standards, and in tissue imaging experiments. In our approach, MALDI is performed in the elevated pressure regime (5-8 Torr) at a spatial resolution of 15-30 μm, while ESI-generated ions are injected orthogonally to the interface axis. We have found that introduction of the MALDI-generated ions into an electrodynamic dual-funnel interface results in increased sensitivity characterized by a limit of detection of ∼400 zmol, while providing a mass measurement accuracy of 1 ppm and a mass resolving power of 120 000 in analysis of protein digests. In tissue imaging experiments, the MALDI/ESI interface has been employed in experiments with rat brain sections and was shown to be capable of visualizing and spatially characterizing very low abundance analytes separated only by 20 mDa. Comparison of imaging data has revealed excellent agreement between the MALDI and histological images.
基质辅助激光解吸电离,MALDI,已越来越多地应用于各种生物医学应用,包括临床组织样本的组织成像,以及药物发现和开发。这些研究强烈依赖于分析仪器的性能,并且将从灵敏度、重现性和质量/空间分辨率的提高中受益匪浅。在这项工作中,我们报告了一种新颖的 MALDI/ESI 接口,它与不同的轨道阱质谱仪(Elite 和 Q Exactive Plus)相连接,并通过肽和蛋白质标准品以及组织成像实验进行了广泛的表征。在我们的方法中,MALDI 在 5-8 托的高压环境下进行,空间分辨率为 15-30 μm,而 ESI 产生的离子以正交于接口轴的方式注入。我们发现,将 MALDI 产生的离子引入电动力学双漏斗接口会导致灵敏度增加,其检测限约为 400 zmol,同时在分析蛋白质消化物时提供 1 ppm 的质量测量精度和 120,000 的质量分辨率。在组织成像实验中,MALDI/ESI 接口已应用于大鼠脑切片实验,并能够可视化和空间表征仅相差 20 mDa 的非常低丰度的分析物。成像数据的比较表明 MALDI 和组织学图像之间具有极好的一致性。