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DOE OSTI · 3673248

High-throughput single-cell sorting by stimulated Raman-activated cell ejection

Abstract

Raman-activated cell sorting isolates single cells in a nondestructive and label-free manner, but its throughput is limited by small spontaneous Raman scattering cross section. Coherent Raman scattering integrated with microfluidics enables high-throughput cell analysis, but faces challenges with small cells (<3 μm) and tissue sections. Here, we report stimulated Raman-activated cell ejection (S-RACE) that enables high-throughput single-cell sorting by integrating stimulated Raman imaging, in situ image decomposition, and laser-induced cell ejection. S-RACE allows ejection of live bacteria or fungi guided by their Raman signatures. Furthermore, S-RACE successfully sorted lipid-richRhodotorula glutiniscells from a cell mixture with a throughput of ~13 cells per second, and the sorting results were confirmed by downstream quantitative polymerase chain reaction. Beyond single cells, S-RACE shows high compatibility with tissue sections. Incorporating a closed-loop feedback control circuit further enables real-time SRS imaging-identification-ejection. In summary, S-RACE opens exciting opportunities for diverse single-cell sorting applications.

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BibTeXRIS

Zhang, Jing (ORCID:0009000718925086), Lin, Haonan (ORCID:0000000304375902), Xu, Jiabao (ORCID:0000000212859408), Zhang, Meng, Ge, Xiaowei (ORCID:0000000189389304), Zhang, Chi (ORCID:0000000277355614), Huang, Wei (ORCID:0000000313026528), Cheng, Ji-Xin (ORCID:0000000256076683). 2024-12-13. High-throughput single-cell sorting by stimulated Raman-activated cell ejection. https://doi.org/10.1126/sciadv.adn6373

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