Department of Chemistry─BMC, Uppsala University, 751 24 Uppsala, Sweden.
Anal Chem. 2022 Feb 8;94(5):2391-2398. doi: 10.1021/acs.analchem.1c03913. Epub 2022 Jan 25.
Sodium and potassium are biological alkali metal ions that are essential for the physiological processes of cells and organisms. In combination with small-molecule metabolite information, disturbances in sodium and potassium tissue distributions can provide a further understanding of the biological processes in diseases. However, methods using mass spectrometry are generally tailored toward either elemental or molecular detection, which limits simultaneous quantitative mass spectrometry imaging of alkali metal ions and molecular ions. Here, we provide a new method by including crown ether molecules in the solvent for nanospray desorption electrospray ionization mass spectrometry imaging (nano-DESI MSI) that combines host-guest chemistry targeting sodium and potassium ions and quantitative imaging of endogenous lipids and metabolites. After evaluation and optimization, the method was applied to an ischemic stroke model, which has highly dynamic tissue sodium and potassium concentrations, and we report 2 times relative increase in the detected sodium concentration in the ischemic region compared to healthy tissue. Further, in the same experiment, we showed the accumulation and depletion of lipids, neurotransmitters, and amino acids using relative quantitation with internal standards spiked in the nano-DESI solvent. Overall, we demonstrate a new method that with a simple modification in liquid extraction MSI techniques using host-guest chemistry provides the added dimension of alkali metal ion imaging to provide unique insights into biological processes.
钠和钾是生物碱金属离子,对细胞和生物体的生理过程至关重要。结合小分子代谢物信息,钠和钾组织分布的紊乱可以进一步了解疾病中的生物学过程。然而,使用质谱的方法通常针对元素或分子检测进行定制,这限制了碱金属离子和分子离子的同时定量质谱成像。在这里,我们提供了一种新的方法,即在纳米喷雾解吸电喷雾电离质谱成像(nano-DESI MSI)的溶剂中包含冠醚分子,该方法结合了靶向钠和钾离子的主客体化学和内源性脂质和代谢物的定量成像。经过评估和优化,该方法应用于具有高度动态组织钠和钾浓度的缺血性中风模型,我们报告说,与健康组织相比,缺血区域检测到的钠浓度相对增加了 2 倍。此外,在相同的实验中,我们使用内标在 nano-DESI 溶剂中添加的相对定量法显示了脂质、神经递质和氨基酸的积累和消耗。总的来说,我们展示了一种新的方法,即在液体提取 MSI 技术中进行简单的修饰,使用主客体化学提供了碱金属离子成像的附加维度,从而为生物学过程提供了独特的见解。