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Engineering muscle cell alignment through 3D bioprinting

Academic Article
Publication Date:
2017
abstract:
Processing of hydrogels represents a main challenge for the prospective application of additive manufacturing (AM) to soft tissue engineering. Furthermore, direct manufacturing of tissue precursors with a cell density similar to native tissues has the potential to overcome the extensive in vitro culture required for conventional cell-seeded scaffolds seeking to fabricate constructs with tailored structural and functional properties. In this work, we present a simple AM methodology that exploits the thermoresponsive behavior of a block copolymer (Pluronic) as a means to obtain good shape retention at physiological conditions and to induce cellular alignment. Pluronic/alginate blends have been investigated as a model system for the processing of C2C12 murine myoblast cell line. Interestingly, C2C12 cell model demonstrated cell alignment along the deposition direction, potentially representing a new avenue to tailor the resulting cell histoarchitecture during AM process. Furthermore, the fabricated constructs exhibited high cell viability, as well as a significantly improved expression of myogenic genes vs. conventional 2D cultures. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2582-2588, 2017.
Iris type:
01.01 Articolo in rivista
Keywords:
3D Bioprinting; Hydrogel; Muscle cells
List of contributors:
Gori, Manuele
Authors of the University:
GORI MANUELE
Handle:
https://iris.cnr.it/handle/20.500.14243/398788
Published in:
JOURNAL OF BIOMEDICAL MATERIALS RESEARCH. PART A
Journal
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http://www.scopus.com/record/display.url?eid=2-s2.0-85020698118&origin=inward
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