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  3. The effect of a slow mode of BMP-2 delivery on the inflammatory response provoked by bone-defect-filling polymeric scaffolds
 

The effect of a slow mode of BMP-2 delivery on the inflammatory response provoked by bone-defect-filling polymeric scaffolds

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Publisher DOI
10.1016/j.biomaterials.2010.06.037
PubMed ID
20638718
Description
We investigated the inflammatory response to, and the osteoinductive efficacies of, four polymers (collagen, Ethisorb, PLGA and Polyactive) that bore either an adsorbed (fast-release kinetics) or a calcium-phosphate-coating-incorporated (slow-release kinetics) depot of BMP-2. Titanium-plate-supported discs of each polymer (n = 6 per group) were implanted at an ectopic (subcutaneous) ossification site in rats (n = 48). Five weeks later, they were retrieved for a histomorphometric analysis of the volumes of ectopic bone and foreign-body giant cells (a gauge of inflammatory reactivity), and the degree of polymer degradation. For each polymer, the osteoinductive efficacy of BMP-2 was higher when it was incorporated into a coating than when it was directly adsorbed onto the material. This mode of BMP-2 carriage was consistently associated with an attenuation of the inflammatory response. For coated materials, the volume density of foreign-body giant cells was inversely correlated with the volume density of bone (r(2) = 0.96), and the volume density of bone was directly proportional to the surface-area density of the polymer (r(2) = 0.97). Following coating degradation, other competitive factors, such as the biocompatibility and the biodegradability of the polymer itself, came into play.
Date of Publication
2010
Publication Type
Article
Language(s)
en
Contributor(s)
Wu, Gang
Liu, Yuelian
Iizuka, Tateyuki
Universitätsklinik für Schädel-, Kiefer- und Gesichtschirurgie
Hunziker, Ernst Bruno
DKF, Center of Regenerative Medicine for Skeletal Tissues
Additional Credits
Universitätsklinik für Schädel-, Kiefer- und Gesichtschirurgie
DKF, Center of Regenerative Medicine for Skeletal Tissues
Series
Biomaterials
Publisher
Elsevier
ISSN
0142-9612
Access(Rights)
metadata.only
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