Low-cost and effective fabrication of biocompatible nanofibers from silk and cellulose-rich materials
journal contribution
posted on 2016-04-05, 14:47authored bySusana Guzman-Puyol, Jose A. Heredia-Guerrero, Luca Ceseracciu, Hadi Hajiali, Claudio Canale, Alice Scarpellini, Roberto Cingolani, Ilker S. Bayer, Athanassia Athanassiou, Elisa MeleElisa Mele
Here, we show the production of nanofibrous mats with controlled mechanical properties and excellent biocompatibility by combining fibroin with pure cellulose and cellulose-rich parsley powder agro-waste. To this end, trifluoroacetic acid was used as a common solvent for all of the involved biomaterials, achieving highly homogeneous blends that were suitable for the electrospinning technique. Morphological analysis revealed that the electrospun composite nanofibers were well-defined and defect-free, with a diameter in the range of 65−100 nm. Mechanical investigations demonstrated that the fibrous mats exhibited an increased stiffness when pure fibroin was combined with cellulose, whereas they possessed an increased flexibility when the parsley waste was added to fibroin. Lastly, the produced mats were highly biocompatible, as demonstrated by the promoted proliferation of fibroblast cells. The characteristics of the hybrid fibroin−cellulose nanofibers, in terms of nanoscale topography, mechanical properties, and biocompatibility, are attractive and potentially applicable in the biomedical sector.
History
School
Aeronautical, Automotive, Chemical and Materials Engineering
Department
Materials
Published in
ACS Biomaterials Science & Engineering
Volume
2
Issue
4
Pages
526-534
Citation
GUZMAN-PUYOL, S. ...et al., 2016. Low-cost and effective fabrication of biocompatible nanofibers from silk and cellulose-rich materials. ACS Biomaterials Science & Engineering, 2(4), pp. 526–534.
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