Please use this identifier to cite or link to this item: http://hdl.handle.net/10773/35909
Title: Alginate-lysozyme nanofibers hydrogels with improved rheological behavior, printability and biological properties for 3D bioprinting applications
Author: Teixeira, Maria C.
Lameirinhas, Nicole S
Carvalho, João P F
Valente, Bruno F A
Luís, Jorge
Pires, Liliana
Oliveira, Helena
Oliveira, Martinho
Silvestre, Armando J D
Vilela, Carla
Freire, Carmen S R
Keywords: Alginate
Lysozyme nanofibers
Hydrogels
Bioinks
Rheological properties
Extrusion 3D bioprinting
Cell-laden scaffolds
Issue Date: 26-Jun-2022
Publisher: MDPI
Abstract: In this study, alginate nanocomposite hydrogel bioinks reinforced with lysozyme nanofibers (LNFs) were developed. Alginate-LNF (A-LNF) suspensions with different LNF contents (1, 5 and 10 wt.%) were prepared and pre-crosslinked with 0.5% (w/v) CaCl2 to formulate A-LNF inks. These inks exhibit proper shear-thinning behavior and good recovery properties (~90%), with the pre-crosslinking step playing a crucial role. A-LNF fully crosslinked hydrogels (with 2% (w/v) CaCl2) that mimic 3D printing scaffolds were prepared, and it was observed that the addition of LNFs improved several properties of the hydrogels, such as the morphology, swelling and degradation profiles, and mechanical properties. All formulations are also noncytotoxic towards HaCaT cells. The printing parameters and 3D scaffold model were then optimized, with A-LNF inks showing improved printability. Selected A-LNF inks (A-LNF0 and A-LNF5) were loaded with HaCaT cells (cell density 2 × 106 cells mL-1), and the cell viability within the bioprinted scaffolds was evaluated for 1, 3 and 7 days, with scaffolds printed with the A-LNF5 bioink showing the highest values for 7 days (87.99 ± 1.28%). Hence, A-LNF bioinks exhibited improved rheological performance, printability and biological properties representing a good strategy to overcome the main limitations of alginate-based bioinks.
Peer review: yes
URI: http://hdl.handle.net/10773/35909
DOI: 10.3390/nano12132190
Appears in Collections:CESAM - Artigos
CICECO - Artigos
DBio - Artigos
ESAN - Artigos

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