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Bioceramics Development and Applications

ISSN: 2090-5025

Open Access

Volume 2, Issue 1 (2012)

Research Article Pages: 0 - 0

Scaffold Effects of Microporous Biphasic Calcium Phosphate Granules and Role of HPMC Hydrogels in Injectable Multiphasic Bone Substitute Developments

G. Daculsi, A. P. Uzel, J. C. Cursolle, E. Goyenvalle, and E. Aguado

Calcium phosphate granules associated with hydrogels were developed as bone substitutes for various clinical applications. These Injectable Bone Substitutes (IBS) should regenerate bone tissue. The efficiency of these multiphasic materials was due to the osteogenic properties of the Microporous Biphasic Calcium phosphate (BCP) granules. The hydrosoluble polymers associated to BCP were considered as a carrier alone. In this study we used hydrosoluble polymers with and without gelling properties in association with the BCP granules. The two suspensions were implanted in femoral epiphysis defects in rabbits and dogs. No foreign body reaction was observed in all samples. However, due to the higher density of the hydrogel/BCP composite caused by the gelling; cell colonization and bone tissue ingrowth was delayed. This study demonstrated that the gelling properties delayed on time biological colonization and decreased the rate of resorption.

Research Article Pages: 0 - 0

Porous Strontium-Containing Ceramic Granules as Bone Graft Substitutes

Gerald Zimmer, Kathrin Kroonen, Katarzyna I. Gorna, John Barry, Andreas Goppelt, and Andreas Goessl

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Case Report Pages: 0 - 0

Drug Release from a Three-Dimensionally Perforated Porous Apatite/Collagen Composite Cement

Makoto Otsuka, Hidenori Nakagawa, Kuniko Otsuka,Atsuo Ito,and William I. Higuchi

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Research Article Pages: 0 - 0

Anti-Tumor Effect of a Local Delivery System; Hydroxyapatite-Alginate Beads of Paclitaxel

M. Kobayashi, M. Sakane, T. Abe, T. Ikoma, and N. Ochiai

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Research Article Pages: 0 - 0

A Revised Replication Method for Bioceramic Scaffolds

D. Bellucci, A. Sola, and V. Cannillo

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