Department of Chemistry, Purdue University, West Lafayette, IN, 47907, USA.
Division of Reproductive Sciences, Cincinnati Children's Hospital Medical Centre and Department of Pediatrics, University of Cincinnati College of Medicine, Cincinnati, OH, 45229, USA.
Anal Chim Acta. 2021 Nov 22;1186:339085. doi: 10.1016/j.aca.2021.339085. Epub 2021 Sep 21.
Simultaneous spatial localization and structural characterization of molecules in complex biological samples currently represents an analytical challenge for mass spectrometry imaging (MSI) techniques. In this study, we describe a novel experimental platform, which substantially expands the capabilities and enhances the depth of chemical information obtained in high spatial resolution MSI experiments performed using nanospray desorption electrospray ionization (nano-DESI). Specifically, we designed and constructed a portable nano-DESI MSI platform and coupled it with a drift tube ion mobility (IM) spectrometer-mass spectrometer. We demonstrate imaging of drift time-separated ions with a high spatial resolution of better than ∼25 μm using uterine tissues on day 4 of pregnancy in mice. Collision cross-section measurements provide unique molecular descriptors of molecules observed in nano-DESI-IM-MSI necessary for their unambiguous identification by comparison with databases. Meanwhile, isomer-specific imaging reveals variations in the isomeric composition across the tissue. Furthermore, IM separation efficiently eliminates isobaric and isomeric interferences originating from solvent peaks, overlapping isotopic peaks of endogenous molecules extracted from the tissue, and products of in-source fragmentation, which is critical to obtaining accurate concentration gradients in the sample using MSI. The structural information provided by the IM separation substantially expands the molecular specificity of high-resolution MSI necessary for unraveling the complexity of biological systems.
目前,对复杂生物样本中的分子进行同时空间定位和结构特征分析,这对质谱成像(MSI)技术来说仍是一项挑战。在本研究中,我们描述了一种新颖的实验平台,该平台可极大扩展纳喷雾解吸电喷雾电离(nano-DESI)进行的高空间分辨率 MSI 实验中获得的化学信息的深度和能力。具体而言,我们设计并构建了一种便携式 nano-DESI MSI 平台,并将其与漂移管离子淌度(IM)谱仪-质谱仪相耦合。我们展示了使用在怀孕第 4 天的小鼠子宫组织,以优于约 25 μm 的高空间分辨率对漂移时间分离的离子进行成像。碰撞截面测量为 nano-DESI-IM-MS 中观察到的分子提供了独特的分子描述符,这些描述符对于通过与数据库进行比较进行明确识别是必需的。同时,对异构体特异性的成像揭示了组织中异构体组成的变化。此外,IM 分离可有效地消除源自溶剂峰、从组织中提取的内源性分子的重叠同位素峰以及源内碎裂产物的等质异位和异构体干扰,这对于使用 MSI 获得样品中准确的浓度梯度至关重要。IM 分离提供的结构信息极大地扩展了高分辨率 MSI 的分子特异性,对于揭示生物系统的复杂性是必需的。