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Novel soybean/gelatine-based bioactive and injectable hydroxyapatite foam: material properties and cell response

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10.1016/j.actbio.2010.12.012
 
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hdl:2117/11240

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Baldini, Nicola
Perut, Francesca
Montufar Jiménez, Edgar Benjamin
Ciapetti, Gabriela
Santin, Matteo
Salvage, J
Traykova, Tania
Planell Estany, Josep AntonMés informacióMés informacióMés informació
Ginebra Molins, Maria PauMés informacióMés informacióMés informació
CovenanteeIstituto Ortopedico Rizzoli
Document typeArticle
Defense date2010-12-10
Rights accessRestricted access - publisher's policy
Attribution-NonCommercial-NoDerivs 3.0 Spain
This work is protected by the corresponding intellectual and industrial property rights. Except where otherwise noted, its contents are licensed under a Creative Commons license : Attribution-NonCommercial-NoDerivs 3.0 Spain
Abstract
Despite their known osteoconductivity, clinical use of calcium phosphate cements is limited both by their relatively slow rate of resorption and by rheological properties incompatible with injectability. Bone in-growth and material resorption have been improved by the development of porous calcium phosphate cements. However, injectable formulations have so far only been obtained through the addition of relatively toxic surfactants. The present work describes the response of osteoblasts to a novel injectable foamed bone cement based on a composite formulation including the bioactive foaming agents soybean and gelatine. The foaming properties of both defatted soybean and gelatine gels were exploited to develop a self-hardening soy/gelatine/hydroxyapatite composite foam able to retain porosity upon injection. After setting, the foamed paste produced a calcium-deficient hydroxyapatite scaffold, showing good injectability and cohesion as well as interconnected porosity after injection. The intrinsic bioactivity of soybean and gelatine was shown to favour osteoblast adhesion and growth. These findings suggest that injectable, porous and bioactive calcium phosphate cements can be produced for bone regeneration through minimally invasive surgery.
CitationPerut, F. [et al.]. Novel soybean/gelatine-based bioactive and injectable hydroxyapatite foam: material properties and cell response. "Acta biomaterialia", 10 Desembre 2010. 
URIhttp://hdl.handle.net/2117/11240
DOI10.1016/j.actbio.2010.12.012
ISSN1742-7061
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  • BBT - Grup de recerca en Biomaterials, Biomecànica i Enginyeria de Teixits - Articles de revista [478]
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