Coaxial HybridIonization–Mass Cytometry forHigh-Throughput and High-Coverage Single-Cell Metabolomics
作者:Yi Zhang (9093), Mingxuan Li (8634801), Qian Li (114642), Mingying Shi, Shaojie Qin, Lili Cui (418196), Huan Chen (6545), Hongwei Hou, Yu Bai · 发表于:Figshare · 年份:2026 · DOI:10.1021/acs.analchem.6c02532.s001 · 研究领域:Mass Spectrometry Techniques and Applications、Metabolomics and Mass Spectrometry Studies、bioluminescence and chemiluminescence research
Single-cell metabolomic analysis is pivotal for deciphering the dynamic and heterogeneous metabolic processes of individual cells. However, the limited metabolite coverage has constrained its broader applicability, primarily due to the low intracellular abundance and wide physicochemical diversity of metabolites. Here, we developed a coaxial hybrid ionization–mass cytometry platform (Hybrid-CytoMS) by integrating a dielectric barrier discharge ionization (DBDI) source with an electrospray ionization (ESI)-based organic mass cytometry system. This integration significantly enhances ionization efficiency through synergistic complementarity of the two ionization mechanisms. The platform features a coaxial architecture that minimizes ion transmission losses while maintaining high-throughput analysis at 30 cells per minute. Hybrid-CytoMS significantly enhances the signal intensities for polar and moderately polar compounds and enables the detection of nonpolar compounds that are invisible in the ESI-only mode. In single-cell metabolomic analysis using Hybrid-CytoMS, >2500 features, >500 single-cell characteristic peaks, and 369 annotated metabolites were detected in positive ion mode. Compared to the results of conventional ESI-based mass cytometry, increasing of >200 characteristic peaks and >100 additional annotated metabolites was achieved. The Hybrid-CytoMS was further applied in the study of benzo[ a ]pyrene (BaP) – a prototypical polycyclic aromatic hydrocarbon (PAH) – induc...