GENYO, Centre for Genomics and Oncological Research, Pfizer/University of Granada/Andalusian Regional Gov-ernment, PTS Granada, Avda. Ilustración 114, 18016 Granada, Spain.
Department of Medicinal & Organic Chemistry and Excellence Research Unit of "Chemistry applied to Biomedi-cine and the Environment", Faculty of Pharmacy, University of Granada, Campus de Cartuja s/n, 18071 Granada, Spain.
Anal Chem. 2022 Aug 2;94(30):10626-10635. doi: 10.1021/acs.analchem.2c00795. Epub 2022 Jul 22.
Barcoding and pooling cells for processing as a composite sample are critical to minimize technical variability in multiplex technologies. Fluorescent cell barcoding has been established as a standard method for multiplexing in flow cytometry analysis. In parallel, mass-tag barcoding is routinely used to label cells for mass cytometry. Barcode reagents currently used label intracellular proteins in fixed and permeabilized cells and, therefore, are not suitable for studies with live cells in long-term culture prior to analysis. In this study, we report the development of fluorescent palladium-based hybrid-tag nanotrackers to barcode live cells for flow and mass cytometry dual-modal readout. We describe the preparation, physicochemical characterization, efficiency of cell internalization, and durability of these nanotrackers in live cells cultured over time. In addition, we demonstrate their compatibility with standardized cytometry reagents and protocols. Finally, we validated these nanotrackers for drug response assays during a long-term coculture experiment with two barcoded cell lines. This method represents a new and widely applicable advance for fluorescent and mass-tag barcoding that is independent of protein expression levels and can be used to label cells before long-term drug studies.
对细胞进行条形码标记和混池处理对于最大限度地减少多重分析技术中的技术变异性至关重要。荧光细胞条形码标记已被确立为流式细胞分析中多重化的标准方法。与此同时,质量标记条形码标记也被常规用于对细胞进行标记以进行质谱细胞分析。目前使用的条形码试剂标记固定和通透化细胞中的细胞内蛋白,因此不适合在分析前对长期培养的活细胞进行研究。在本研究中,我们报告了开发基于钯的荧光混合标记纳米跟踪器,以对活细胞进行条形码标记,用于流式和质谱细胞双重模式读取。我们描述了这些纳米跟踪器的制备、物理化学特性、细胞内化效率以及在长时间培养的活细胞中的耐用性。此外,我们还证明了它们与标准化细胞检测试剂和方案的兼容性。最后,我们在与两个条形码细胞系的长期共培养实验中验证了这些纳米跟踪器在药物反应检测中的应用。该方法代表了一种新的、广泛适用的荧光和质量标记条形码标记方法,它独立于蛋白表达水平,可以在长期药物研究之前对细胞进行标记。