4.3 Article

Creep-resistant dextran-based polyurethane foam as a candidate scaffold for bone tissue engineering: Synthesis, chemico-physical characterization, and in vitro and in vivo biocompatibility

Publisher

TAYLOR & FRANCIS AS
DOI: 10.1080/00914037.2016.1163565

Keywords

Bone graft substitute; composite scaffolds; dextran; polyurethane; regenerative medicine; tissue engineering

Funding

  1. Regione Lombardia
  2. POR FESR [ATP 2009, 13396272]

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A highly crosslinked composite dextran-based scaffold (named DexFoam) was tailored to overcome specific deficiencies of polymeric and ceramic bone scaffolds and to guarantee a bone-mimicking microenvironment for the proliferation of human mesenchymal stem cells in vitro. The creep resistance for up to 90% compressive stain, the capability to regain the original shape after deformation, and the good thermal stability in both physiological and body limit conditions make DexFoam a valid alternative to the currently available bone scaffolds. Histopathological evaluation for host reaction and tissue colonization of DexFoam scaffold, implanted subcutaneously in mice, demonstrated its in vivo biocompatibility and biodegradability.

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