Computational Hyperspectral Microflow Cytometry

  • Yun, Hyo Geun
  • Cadierno, Yoel Alonso
  • Kim, Tae Won
  • Muñoz-Barrutia, Arrate
  • Garica-Gonzalez, Daniel
  • ... Choi, Sungyoung
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초록

Miniaturized flow cytometry has significant potential for portable applications, such as cell-based diagnostics and the monitoring of therapeutic cell manufacturing, however, the performance of current techniques is often limited by the inability to resolve spectrally-overlapping fluorescence labels. Here, the study presents a computational hyperspectral microflow cytometer (CHC) that enables accurate discrimination of spectrally-overlapping fluorophores labeling single cells. CHC employs a dispersive optical element and an optimization algorithm to detect the full fluorescence emission spectrum from flowing cells, with a high spectral resolution of ≈3 nm in the range from 450 to 650 nm. CHC also includes a dedicated microfluidic device that ensures in-focus imaging through viscoelastic sheathless focusing, thereby enhancing the accuracy and reliability of microflow cytometry analysis. The potential of CHC for analyzing T lymphocyte subpopulations and monitoring changes in cell composition during T cell expansion is demonstrated. Overall, CHC represents a major breakthrough in microflow cytometry and can facilitate its use for immune cell monitoring.

키워드

computational hyperspectral fluorescence analysismicroflow cytometrysheathless focusingspectral reconstructionT lymphocyte analysisFLOW-CYTOMETRYPROGRESS
제목
Computational Hyperspectral Microflow Cytometry
저자
Yun, Hyo GeunCadierno, Yoel AlonsoKim, Tae WonMuñoz-Barrutia, ArrateGarica-Gonzalez, DanielChoi, Sungyoung
DOI
10.1002/smll.202400019
발행일
2024-07
유형
Article in press
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