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Sorting on the basis of deformability of single cells in a femtosecond laser fabricated optofluidic device

Conference Paper
Publication Date:
2015
abstract:
Optical stretching is a powerful technique for the mechanical phenotyping of single suspended cells that exploits cell deformability as an inherent functional marker. Dual-beam optical trapping and stretching of cells is a recognized tool to investigate their viscoelastic properties. The optical stretcher has the ability to deform cells through optical forces without physical contact or bead attachment. In addition, it is the only method that can be combined with microfluidic delivery, allowing for the serial, high-throughput measurement of the optical deformability and the selective sorting of single specific cells. Femtosecond laser micromachining can fabricate in the same chip both the microfluidic channel and the optical waveguides, producing a monolithic device with a very precise alignment between the components and very low sensitivity to external perturbations. Femtosecond laser irradiation in a fused silica chip followed by chemical etching in hydrofluoric acid has been used to fabricate the microfluidic channels where the cells move by pressure-driven flow. With the same femtosecond laser source two optical waveguides, orthogonal to the microfluidic channel and opposing each other, have been written inside the chip. Here we present an optimized writing process that provides improved wall roughness of the microchannels allowing high-quality imaging. In addition, we will show results on cell sorting on the basis of mechanical properties in the same device: the different deformability exhibited by metastatic and tumorigenic cells has been exploited to obtain a metastasis-cells enriched sample. The enrichment is verified by exploiting, after cells collection, fluorescence microscopy.
Iris type:
04.01 Contributo in Atti di convegno
Keywords:
Optofluidics; Cell mechanical properties; Cell sorting; Femtosecond laser micromachining; Single cell manipulation
List of contributors:
Osellame, Roberto; MARTINEZ VAZQUEZ, Rebeca; Bragheri, Francesca; Mondello, Chiara
Authors of the University:
BRAGHERI FRANCESCA
MARTINEZ VAZQUEZ REBECA
OSELLAME ROBERTO
Handle:
https://iris.cnr.it/handle/20.500.14243/270517
Published in:
PROCEEDINGS OF SPIE, THE INTERNATIONAL SOCIETY FOR OPTICAL ENGINEERING
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