Department of Chemistry, University of Surrey, Guildford, UK.
Department of Chemical and Process Engineering, University of Surrey, Guildford, UK.
Analyst. 2023 Feb 27;148(5):1041-1049. doi: 10.1039/d2an01732f.
This work describes the development of a new approach to measure drug levels and lipid fingerprints in single living mammalian cells. Nanocapillary sampling is an approach that enables the selection and isolation of single living cells under microscope observation. Here, live single cell nanocapillary sampling is coupled to liquid chromatography for the first time. This allows molecular species to be separated prior to ionisation and improves measurement precision of drug analytes. The efficiency of transferring analytes from the sampling capillary into a vial was optimised in this work. The analysis was carried out using standard flow liquid chromatography coupled to widely available mass spectrometry instrumentation, highlighting opportunities for widespread adoption. The method was applied to 30 living cells, revealing cell-to-cell heterogeneity in the uptake of different drug molecules. Using this system, we detected 14-158 lipid features per single cell, revealing the association between bedaquiline uptake and lipid fingerprints.
本工作描述了一种新方法的开发,用于测量单个人哺乳动物细胞中的药物水平和脂质指纹。纳米毛细管采样是一种能够在显微镜观察下选择和分离单个活细胞的方法。在这里,首次将活单细胞纳米毛细管采样与液相色谱法相结合。这使得在离子化之前能够分离分子物种,并提高药物分析物的测量精度。本工作优化了将分析物从采样毛细管转移到小瓶中的效率。该分析使用标准流量液相色谱法与广泛可用的质谱仪器联用,突出了广泛采用的机会。该方法应用于 30 个活细胞,揭示了不同药物分子摄取的细胞间异质性。使用该系统,我们每单个细胞检测到 14-158 个脂质特征,揭示了贝达喹啉摄取与脂质指纹之间的关联。