McLean John A, Fenn Larissa S, Enders Jeffrey R
Department of Chemistry, Vanderbilt Institute of Chemical Biology, Vanderbilt University, Nashville, TN, USA.
Methods Mol Biol. 2010;656:363-83. doi: 10.1007/978-1-60761-746-4_21.
This chapter describes the utility of structurally based separations combined with imaging mass spectrometry (MS) by ion mobility-MS (IM-MS) approaches. The unique capabilities of combining rapid (mus-ms) IM separations with imaging MS are detailed for an audience ranging from new to potential practitioners in IM-MS technology. Importantly, imaging IM-MS provides the ability to rapidly separate and elucidate various types of endogenous and exogenous biomolecules (e.g., nucleotides, carbohydrates, peptides, and lipids), including isobaric species. Drift tube and traveling wave IM-MS instrumentation are described and specific protocols are presented for calculating ion-neutral collision cross sections (i.e., apparent ion surface area or structure) from experimentally obtained IM-MS data. Special emphasis is placed on the use of imaging IM-MS for the analysis of samples in life sciences research (e.g., thin tissue sections), including selective imaging for peptide/protein and lipid distributions. Future directions for rapid and multiplexed imaging IM-MS/MS are detailed.
本章介绍了基于结构的分离技术与成像质谱(MS)相结合,通过离子淌度-质谱(IM-MS)方法的实用性。从IM-MS技术的新手到潜在从业者,详细阐述了将快速(微秒-毫秒)IM分离与成像质谱相结合的独特能力。重要的是,成像IM-MS能够快速分离和阐明各种类型的内源性和外源性生物分子(如核苷酸、碳水化合物、肽和脂质),包括等压物质。描述了漂移管和行波IM-MS仪器,并给出了根据实验获得的IM-MS数据计算离子-中性碰撞截面(即表观离子表面积或结构)的具体方案。特别强调了成像IM-MS在生命科学研究(如薄组织切片)中样品分析的应用,包括肽/蛋白质和脂质分布的选择性成像。详细介绍了快速和多重成像IM-MS/MS的未来发展方向。