Lab-on-chips (LoCs) are microsystems capable of manipulating small amounts of fluids in microfluidic channels. They have a huge application potential, from basic science to chemical synthesis and point-of-care medical analysis. Polymers are rapidly emerging as the substrate of choice for LoC production, thanks to a low material cost and ease of processing. Two breakthroughs that could promote LoC diffusion are a microfabrication technology with cost-effective and rapid prototyping capabilities and also an integrated on-chip optical detection system. This chapter proposes the use of femtosecond laser micromachining combined with microinjection moulding as a novel highly-flexible microfabrication platform for polymeric LoCs with integrated optical detection, for the realization of low-cost and truly portable biophotonic microsystems. We demonstrate a LoC for the relevant application of non-invasive and contactless mechanical phenotyping of single cancer cells.

Plastic Lab-on-Chip for the Optical Manipulation of Single Cells

Rebeca Martínez Vázquez;Gianluca Trotta;Melania Paturzo;Francesco Modica;Vittorio Bianco;Sara Coppola;Antonio Ancona;Pietro Ferraro;Irene Fassi;Roberto Osellame
2019

Abstract

Lab-on-chips (LoCs) are microsystems capable of manipulating small amounts of fluids in microfluidic channels. They have a huge application potential, from basic science to chemical synthesis and point-of-care medical analysis. Polymers are rapidly emerging as the substrate of choice for LoC production, thanks to a low material cost and ease of processing. Two breakthroughs that could promote LoC diffusion are a microfabrication technology with cost-effective and rapid prototyping capabilities and also an integrated on-chip optical detection system. This chapter proposes the use of femtosecond laser micromachining combined with microinjection moulding as a novel highly-flexible microfabrication platform for polymeric LoCs with integrated optical detection, for the realization of low-cost and truly portable biophotonic microsystems. We demonstrate a LoC for the relevant application of non-invasive and contactless mechanical phenotyping of single cancer cells.
2019
Istituto di fotonica e nanotecnologie - IFN
Inglese
Tullio Tolio, Giacomo Copani, Walter Terkaj
Facories of the Future
339
363
24
978-3-319-94358-9
https://link.springer.com/book/10.1007%2F978-3-319-94358-9
Springer
London
REGNO UNITO DI GRAN BRETAGNA
Sì, ma tipo non specificato
Factories of the future
11
02 Contributo in Volume::02.01 Contributo in volume (Capitolo o Saggio)
268
none
Martinez Vazquez, Rebeca; Trotta, Gianluca; Volpe, Annalisa; Paturzo, Melania; Modica, Francesco; Bianco, Vittorio; Coppola, Sara; Ancona, Antonio; Fe...espandi
info:eu-repo/semantics/bookPart
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/354953
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