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A novel strategy to enhance interfacial adhesion in fiber-reinforced calcium phosphate cement

Gallinetti, Sara, 1985- (författare)
Uppsala universitet,Tillämpad materialvetenskap,Universitat Politècnica de Cataluny; Barcelona Research Center in Multiscale Science and Engineering, UPC, Barcelona, Spain,Materials in Medicine
Mestres, Gemma, 1984- (författare)
Uppsala universitet,Mikrosystemteknik,MST/EMBLA
Canal, Cristina (författare)
Universitat Politècnica de Catalunya; Barcelona Research Center in Multiscale Science and Engineering,Biomaterials, Biomechanics and Tissue Engineering Group, Department of Materials Science and Metallurgical Engineering
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Persson, Cecilia (författare)
Uppsala universitet,Tillämpad materialvetenskap,Materials in Medicine
Ginebra, Maria-Pau (författare)
Universitat Politècnica de Catalunya; Barcelona Research Center in Multiscale Science and Engineering,Biomaterials, Biomechanics and Tissue Engineering Group, Department of Materials Science and Metallurgical Engineering
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 (creator_code:org_t)
Elsevier BV, 2017
2017
Engelska.
Ingår i: Journal of The Mechanical Behavior of Biomedical Materials. - : Elsevier BV. - 1751-6161 .- 1878-0180. ; 75, s. 495-503
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • Calcium phosphate cements (CPCs) are extensively used as synthetic bone grafts, but their poor toughness limits their use to non-load-bearing applications. Reinforcement through introduction of fibers and yarns has been evaluated in various studies but always resulted in a decrease in elastic modulus or bending strength when compared to the CPC matrix. The aim of the present work was to improve the interfacial adhesion between fibers and matrix to obtain tougher biocompatible fiber-reinforced calcium phosphate cements (FRCPCs). This was done by adding a polymer solution to the matrix, with chemical affinity to the reinforcing chitosan fibers, namely trimethyl chitosan (TMC). The improved wettability and chemical affinity of the chitosan fibers with the TMC in the liquid phase led to an enhancement of the interfacial adhesion. This resulted in an increase of the work of fracture (several hundred-fold increase), while the elastic modulus and bending strength were maintained similar to the materials without additives. Additionally the TMC-modified CPCs showed suitable biocompatibility with an osteoblastic cell line.

Ämnesord

MEDICIN OCH HÄLSOVETENSKAP  -- Medicinsk bioteknologi -- Biomaterialvetenskap (hsv//swe)
MEDICAL AND HEALTH SCIENCES  -- Medical Biotechnology -- Biomaterials Science (hsv//eng)

Nyckelord

Calcium phosphate cement; Chitosan; Fiber reinforced; Interfacial adhesion; Toughness; Work of fracture

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