SCO-pH: Microfluidic dynamic phenotyping platform for high-throughput screening of single cell acidification

Hyejoong Jeong, Emilia A. Leyes Porello, Jean Gabriel Rosario,Da Kuang,Syung Hun Han,Jai-Yoon Sul,Bomyi Lim,Daeyeon Lee,Junhyong Kim

biorxiv(2024)

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摘要
Studies on the dynamics of single cell phenotyping have been hampered by the lack of quantitative high-throughput metabolism assays. Extracellular acidification, a prominent phenotype, yields significant insights into cellular metabolism, including tumorigenicity. Here, we develop a versatile microfluidic system for single cell optical pH analysis (SCO-pH), which compartmentalizes single cells in 140-pL droplets and immobilizes approximately 40,000 droplets in a two-dimensional array for temporal extracellular pH analysis. SCO-pH distinguishes cells undergoing hyperglycolysis induced by oligomycin A from untreated cells by monitoring their extracellular acidification. To facilitate pH sensing in each droplet, we encapsulate a cell-impermeable pH probe whose fluorescence intensities are quantified. Using this approach, we can differentiate hyperglycolytic cells and concurrently observe single cell heterogeneity in extracellular acidification dynamics. This high-throughput system will be useful in applications that require dynamic phenotyping of single cells with significant heterogeneity. ### Competing Interest Statement The authors have declared no competing interest.
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