Single-cell analysis and manipulation is recognized as a central task for developing novel precision medicine approaches. Label-free technologies are especially attractive due to their potential for reduced costs and suitability to cell-therapy applications. Here, we present the development of a label-free microfluidic system for single-cell sorting based on cell electrical phenotype.

Brandi, C., Spano, S., Cardarilli, G.c., Verona, E., Businaro, L., Bisegna, P., et al. (2023). Development of a microfluidic system for impedance-based cell sorting. In Eighth National Congress of Bioengineering: proceedings 2023. Bologna : Patron Editore S.r.l..

Development of a microfluidic system for impedance-based cell sorting

Brandi C.;Spano S.;Cardarilli G. C.;Bisegna P.;De Ninno A.;Caselli F.
2023-01-01

Abstract

Single-cell analysis and manipulation is recognized as a central task for developing novel precision medicine approaches. Label-free technologies are especially attractive due to their potential for reduced costs and suitability to cell-therapy applications. Here, we present the development of a label-free microfluidic system for single-cell sorting based on cell electrical phenotype.
8th National Congress of Bioengineering, GNB 2023
Padova, Italia
2023
8
National Group of Bioengineering (GNB)
Rilevanza internazionale
2023
Settore ING-IND/34
English
Cell sorting
Impedance cytometry
Microfluidics
Single-cell analysis
Intervento a convegno
Brandi, C., Spano, S., Cardarilli, G.c., Verona, E., Businaro, L., Bisegna, P., et al. (2023). Development of a microfluidic system for impedance-based cell sorting. In Eighth National Congress of Bioengineering: proceedings 2023. Bologna : Patron Editore S.r.l..
Brandi, C; Spano, S; Cardarilli, Gc; Verona, E; Businaro, L; Bisegna, P; De Ninno, A; Caselli, F
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/361844
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