Laboratory for Molecular Medicine and Devices, Graduated School of Biomedical Sciences, Hiroshima University, Hiroshima, Japan.
Laboratory for Single Cell Mass Spectrometry, Quantitative Biology Center, RIKEN, Suita, Osaka, Japan.
Nat Protoc. 2015 Sep;10(9):1445-56. doi: 10.1038/nprot.2015.084. Epub 2015 Aug 27.
Live single-cell mass spectrometry (live MS) provides a mass spectrum that shows thousands of metabolite peaks from a single live plant cell within minutes. By using an optical microscope, a cell is chosen for analysis and a metal-coated nanospray microcapillary tip is used to remove the cell's contents. After adding a microliter of ionization solvent to the opposite end of the tip, the trapped contents are directly fed into the mass spectrometer by applying a high voltage between the tip and the inlet port of the spectrometer to induce nanospray ionization. Proteins are not detected because of insufficient sensitivity. Metabolite peaks are identified by exact mass or tandem mass spectrometry (MS/MS) analysis, and isomers can be separated by combining live MS with ion-mobility separation. By using this approach, spectra can be acquired in 10 min. In combination with metabolic maps and/or molecular databases, the data can be annotated into metabolic pathways; the data analysis takes 30 min to 4 h, depending on the MS/MS data availability from databases. This method enables the analysis of a number of metabolites from a single cell with rapid sampling at sub-attomolar-level sensitivity.
实时单细胞质谱(live MS)可在数分钟内提供一个质谱,显示来自单个活植物细胞的数千个代谢物峰。通过使用光学显微镜,选择一个细胞进行分析,并使用金属涂层纳米喷雾微毛细管尖端将细胞内容物去除。在尖端的相反端添加微升的离化溶剂后,通过在尖端和质谱仪入口之间施加高压,将捕获的内容物直接送入质谱仪,以诱导纳米喷雾离化。由于灵敏度不足,无法检测到蛋白质。代谢物峰通过精确质量或串联质谱(MS/MS)分析进行鉴定,通过将实时 MS 与离子迁移分离相结合,可以分离异构体。通过这种方法,可在 10 分钟内获取光谱。结合代谢图谱和/或分子数据库,可以将数据注释到代谢途径中;数据分析需要 30 分钟到 4 小时,具体取决于数据库中 MS/MS 数据的可用性。该方法能够以亚皮摩尔级的灵敏度从单个细胞中快速采样分析多个代谢物。