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◆ Analytical Chemistry2026-03-25· Mass cytometry

High-Throughput Single-Cell Lipid Mass Cytometry for Rapid and Robust Screening of Rare Cells

Murong Du, Runsong Cheng, Huaiyi Chen, Jingya Cao, Siyuan Pan, Jinlei Yang, Kexin Xu, Wenjing Wang, P. T. Ge, Sichun Zhang, Xinrong R. Zhang

原始摘要(英文原文)· Original abstract
Single-cell lipid mass cytometry holds immense potential for functional phenotyping but is hindered by low throughput. To address this, we developed a high-throughput platform integrating a flow-focusing ionization source with a high-resolution time-of-flight mass spectrometer. This system achieved a maximum throughput of 1064.5 cells/min, representing a 20-fold increase over existing methods such as CyESI-MS (∼38 cells/min) and ILCEI-MS (∼51 cells/min). It enabled the detection and identification of 141 lipids from single cells for precise metabolic phenotyping. When applied to a peripheral blood mononuclear cell assay, the platform successfully analyzed and subtyped complex immune cell populations. Notably, it achieved the rapid, label-free identification of rare dendritic cells with an abundance as low as 1.53% within 3 min. This platform enables efficient screening of rare immune cell subsets based solely on metabolic signatures, establishing a robust foundation for immunology and translational medicine.
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