A novel bioink and a dispensing technique for 3D tissue-engineering applications are presented. The technique incorporates a coaxial extrusion needle using a low-viscosity cell-laden bioink to produce highly defined 3D biostructures. The extrusion system is then coupled to a microfluidic device to control the bioink arrangement deposition, demonstrating the versatility of the bioprinting technique. This low-viscosity cell-responsive bioink promotes cell migration and alignment within each fiber organizing the encapsulated cells.
Microfluidic bioprinting of heterogeneous 3D tissue constructs using low viscosity bioink / Colosi, Cristina; Shin, Su Ryon; Manoharan, Vijayan; Massa, Solange; Costantini, Marco; Barbetta, Andrea; Dokmeci, Mehmet Remzi; Dentini, Mariella; Khademhosseini, Ali. - In: ADVANCED MATERIALS. - ISSN 1521-4095. - ELETTRONICO. - 28:4(2016), pp. 677-684. [10.1002/adma.201503310]
Microfluidic bioprinting of heterogeneous 3D tissue constructs using low viscosity bioink
COLOSI, CRISTINA;COSTANTINI, MARCO;BARBETTA, ANDREA;DENTINI, Mariella;
2016
Abstract
A novel bioink and a dispensing technique for 3D tissue-engineering applications are presented. The technique incorporates a coaxial extrusion needle using a low-viscosity cell-laden bioink to produce highly defined 3D biostructures. The extrusion system is then coupled to a microfluidic device to control the bioink arrangement deposition, demonstrating the versatility of the bioprinting technique. This low-viscosity cell-responsive bioink promotes cell migration and alignment within each fiber organizing the encapsulated cells.File | Dimensione | Formato | |
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