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Hierarchical porosity inherited by natural sources affects the mechanical and biological behaviour of bone scaffolds

Academic Article
Publication Date:
2020
abstract:
A 3-D porous apatite scaffold (B-HA), recently obtained through biomorphic transformation of a natural wood, is investigated on its multi-scale porous structure determining superior biological and mechanical behaviour. B-HA shows a hierarchically organized architecture with wide aligned channels interconnected with smaller tubules, thus recapitulating in detail the lymphatic network of the original wood template. As induced by its biomimetic architecture, B-HA displays values of tensile/compressive strengths and stiffness, higher than values usually measured in sintered ceramics with isotropic porosity. Furthermore, B-HA shows uncommon toughness for a pure ceramic body, plus a tensile/compressive-strength ratio higher than one, so that the material occupies a zone in the Ashby map where ceramics are normally absent. From biological viewpoint, cell co-culture tests in bioreactor are shown to report encouraging results in enhancing the complex tissue regeneration process, thus making B-HA promising as a scaffold able to promote bone regeneration, particularly for large bone defects.
Iris type:
01.01 Articolo in rivista
Keywords:
Biomorphic ceramic; Multi-scale hierarchical pore structure; Mechanical properties; Ductility; Cell co-culture
List of contributors:
Dapporto, Massimiliano; Dozio, SAMUELE MARIA; Sprio, Simone; Ruffini, Andrea; Panseri, Silvia; Montesi, Monica; Tampieri, Anna
Authors of the University:
DAPPORTO MASSIMILIANO
MONTESI MONICA
PANSERI SILVIA
RUFFINI ANDREA
SPRIO SIMONE
TAMPIERI ANNA
Handle:
https://iris.cnr.it/handle/20.500.14243/366554
Published in:
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY
Journal
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