Microfluidic Impedance-Deformability Cytometry for Label-Free Single Neutrophil Mechanophenotyping

  • Petchakup, Chayakorn
  • Yang, Haoning
  • Gong, Lingyan
  • He, Linwei
  • Tay, Hui Min
  • ... Chung, Aram J.
  • 외 3명
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초록

The intrinsic biophysical states of neutrophils are associated with immune dysfunctions in diseases. While advanced image-based biophysical flow cytometers can probe cell deformability at high throughput, it is nontrivial to couple different sensing modalities (e.g., electrical) to measure other critical cell attributes including cell viability and membrane integrity. Herein, an "optics-free" impedance-deformability cytometer for multiparametric single cell mechanophenotyping is reported. The microfluidic platform integrates hydrodynamic cell pinching, and multifrequency impedance quantification of cell size, deformability, and membrane impedance (indicative of cell viability and activation). A newly-defined "electrical deformability index" is validated by numerical simulations, and shows strong correlations with the optical cell deformability index of HL-60 experimentally. Human neutrophils treated with various biochemical stimul are further profiled, and distinct differences in multimodal impedance signatures and UMAP analysis are observed. Overall, the integrated cytometer enables label-free cell profiling at throughput of >1000 cells min(-1) without any antibodies labeling to facilitate clinical diagnostics.

키워드

biophysical phenotypingimpedance cytometryneutrophil profilingELECTRICAL-IMPEDANCECELLSEXPRESSIONIDENTIFICATIONSEPARATIONPARTICLESSEPSISSTATE
제목
Microfluidic Impedance-Deformability Cytometry for Label-Free Single Neutrophil Mechanophenotyping
저자
Petchakup, ChayakornYang, HaoningGong, LingyanHe, LinweiTay, Hui MinDalan, RinkooChung, Aram J.Li, King Ho HoldenHou, Han Wei
DOI
10.1002/smll.202104822
발행일
2022-05
유형
Article
저널명
Small
18
18