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Arrangement of live human cells through acoustic waves generated by piezoelectric actuators for tissue engineering applications

Academic Article
Publication Date:
2020
Abstract:
In this paper, the possibility to steer and confine live human cells by means of acoustic waves, such as flexural plate waves (FPWs), generated by piezoelectric actuators applied to non-piezoelectric substrates, has been explored. A device with two lead zirconate titanate (PZT) actuators with an interdigital transducer (IDT) screen-printed on an alumina (Al2O3) substrate has been fabricated and tested. The experimental results show that, by exciting the actuators at their resonant frequencies, FPW modes are generated in the substrate. By exploiting the device, arrangements of cells on lines at frequency-dependent distances have been obtained. To maintain the alignment after switching off the actuator, cells were entrapped in a fibrin clot that was cultured for several days, enabling the formation of cellular patterns.
CRIS type:
1.1 Articolo in rivista
Keywords:
Acoustic waves; piezoelectric actuators; flexural plate waves (FPWs); in-liquid cell steering and confining; cell manipulation; tissue engineering applications; fibrin gel; myoblasts; endothelial cells
List of contributors:
Serzanti, Marialaura; Bau', Marco; Demori, Marco; Calamaio, Serena; Cominelli, Manuela; Poliani, Pietro Luigi; Dell'Era, Patrizia; Ferrari, Marco; Ferrari, Vittorio
Authors of the University:
BAU' Marco
Cellular fate reprogramming unit
FERRARI Marco
FERRARI Vittorio
POLIANI PIETRO LUIGI
Handle:
https://iris.unibs.it/handle/11379/530885
Published in:
APPLIED SCIENCES
Journal
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