The investigation of the physical properties of peripheral blood mononuclear cells (PBMC) is of great relevance, as they play a key role in regulating human body health. Here we report the possibility to characterize human PBMC in their physiological conditions in a microfluidic-based measurement system. A viscoelastic polymer solution is adopted for 3D alignment of individual cells inflow. An optical signature (OS) acquisition of each flowing cell is performed using a wide angle light scattering apparatus. Besides, a quantitative phase imaging (QPI) holographic system is employed with the aim (i) to check the position in flow of individual cells using a holographic 3D cell tracking method; and (ii) to estimate their 3D morphometric features, such as their refractive index (RI). Results obtained by combining OS and QPI have been compared with literature values, showing good agreement. The results confirm the possibility to obtain sub-micrometric details of physical cell properties in microfluidic flow, avoiding chemical staining or fluorescent labelling.

Label-free analysis of mononuclear human blood cells in microfluidic flow by coherent imaging tools / Dannhauser, David; Rossi, Domenico; Memmolo, Pasquale; Causa, Filippo; Finizio, Andrea; Ferraro, Pietro; Netti, PAOLO ANTONIO. - In: JOURNAL OF BIOPHOTONICS. - ISSN 1864-063X. - 10:5(2017), pp. 683-689. [10.1002/jbio.201600070]

Label-free analysis of mononuclear human blood cells in microfluidic flow by coherent imaging tools

DANNHAUSER, DAVID;CAUSA, FILIPPO;NETTI, PAOLO ANTONIO
2017

Abstract

The investigation of the physical properties of peripheral blood mononuclear cells (PBMC) is of great relevance, as they play a key role in regulating human body health. Here we report the possibility to characterize human PBMC in their physiological conditions in a microfluidic-based measurement system. A viscoelastic polymer solution is adopted for 3D alignment of individual cells inflow. An optical signature (OS) acquisition of each flowing cell is performed using a wide angle light scattering apparatus. Besides, a quantitative phase imaging (QPI) holographic system is employed with the aim (i) to check the position in flow of individual cells using a holographic 3D cell tracking method; and (ii) to estimate their 3D morphometric features, such as their refractive index (RI). Results obtained by combining OS and QPI have been compared with literature values, showing good agreement. The results confirm the possibility to obtain sub-micrometric details of physical cell properties in microfluidic flow, avoiding chemical staining or fluorescent labelling.
2017
Label-free analysis of mononuclear human blood cells in microfluidic flow by coherent imaging tools / Dannhauser, David; Rossi, Domenico; Memmolo, Pasquale; Causa, Filippo; Finizio, Andrea; Ferraro, Pietro; Netti, PAOLO ANTONIO. - In: JOURNAL OF BIOPHOTONICS. - ISSN 1864-063X. - 10:5(2017), pp. 683-689. [10.1002/jbio.201600070]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/640654
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