State Key Laboratory of Precision Measurement Technology and Instrument, Department of Precision Instrument, Tsinghua University, Beijing, 100084, China.
Department of Chemistry, Tsinghua University, Beijing, 100084, China.
Small. 2024 Jun;20(26):e2310700. doi: 10.1002/smll.202310700. Epub 2024 Mar 14.
Single-cell mass spectrometry (MS) is significant in biochemical analysis and holds great potential in biomedical applications. Efficient sample preparation like sorting (i.e., separating target cells from the mixed population) and desalting (i.e., moving the cells off non-volatile salt solution) is urgently required in single-cell MS. However, traditional sample preparation methods suffer from complicated operation with various apparatus, or insufficient performance. Herein, a one-step sample preparation strategy by leveraging label-free impedance flow cytometry (IFC) based microfluidics is proposed. Specifically, the IFC framework to characterize and sort single-cells is adopted. Simultaneously with sorting, the target cell is transferred from the local high-salinity buffer to the MS-compatible solution. In this way, one-step sorting and desalting are achieved and the collected cells can be directly fed for MS analysis. A high sorting efficiency (>99%), cancer cell purity (≈87%), and desalting efficiency (>99%), and the whole workflow of impedance-based separation and MS analysis of normal cells (MCF-10A) and cancer cells (MDA-MB-468) are verified. As a standalone sample preparation module, the microfluidic chip is compatible with a variety of MS analysis methods, and envisioned to provide a new paradigm in efficient MS sample preparation, and further in multi-modal (i.e., electrical and metabolic) characterization of single-cells.
单细胞质谱分析 (MS) 在生化分析中具有重要意义,在生物医学应用中具有巨大潜力。单细胞 MS 迫切需要高效的样品制备方法,如分选(即将目标细胞从混合群体中分离出来)和脱盐(即将细胞从非挥发性盐溶液中移走)。然而,传统的样品制备方法存在操作复杂、仪器种类繁多或性能不足等问题。在此,我们提出了一种基于无标记阻抗流式细胞术 (IFC) 的微流控一步法样品制备策略。具体来说,我们采用了 IFC 框架来对单细胞进行特征分析和分选。在分选的同时,将目标细胞从局部高盐缓冲液转移到 MS 兼容的溶液中。这样,就实现了一步分选和脱盐,收集到的细胞可以直接用于 MS 分析。我们验证了该方法具有较高的分选效率 (>99%)、癌细胞纯度(≈87%)和脱盐效率 (>99%),以及基于阻抗的分离和 MS 分析正常细胞 (MCF-10A) 和癌细胞 (MDA-MB-468) 的整个工作流程。作为一个独立的样品制备模块,该微流控芯片与多种 MS 分析方法兼容,有望为高效 MS 样品制备以及单细胞的多模态(即电和代谢)特征分析提供新的范例。