Literature DB >> 10397907

Degradation of calcium phosphate ceramics.

H K Koerten1, J van der Meulen.   

Abstract

Degradation of three types of sintered calcium phosphate ceramic spheres was investigated in vitro at low pH conditions (LPC) and in an in vivo model, that is, injection into a mouse peritoneal cavity. Degradation was observed under both conditions. The rate of degradation depended on the type of ceramic, with beta-TCP degrading faster than HA and HA degrading faster than FA. Degradation was characterized by dissolution of the necks and the formation of cracks and irregularities in the grains. Intraperitoneal injection of the spheres into a mouse peritoneal cavity led to the formation of foreign body granulomas in which degradation could be observed. The in vivo degradation pattern was similar to that observed in vitro, but longer implantation times resulted in a further degradation. Small fragments rich in Ca and P were present in inclusion bodies. Calcium phosphate crystals sometimes also were observed in mitochondria, many of which were subject to lysis. We observed that ceramic type and implantation period also were related to the number of dead cells in the granulomas. Furthermore, extracellular deposits were seen between cells and ceramic spheres. Ca and P and also Fe were detected in these deposits. The presence of Fe is indicative of a lysosomal origin and thus of exocytotic activity. Copyright 1999 John Wiley & Sons, Inc.

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Year:  1999        PMID: 10397907     DOI: 10.1002/(sici)1097-4636(199901)44:1<78::aid-jbm9>3.0.co;2-6

Source DB:  PubMed          Journal:  J Biomed Mater Res        ISSN: 0021-9304


  11 in total

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3.  Microvascular response to calcium phosphate bone substitutes: an intravital microscopy analysis.

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5.  Evaluating the biodegradability of Gelatin/Siloxane/Hydroxyapatite (GS-Hyd) complex in vivo and its ability for adhesion and proliferation of rat bone marrow mesenchymal stem cells.

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6.  The mechanical properties of calcium phospate ceramics modified by collagen coating and populated by osteoblasts.

Authors:  J C Brodie; J Merry; M H Grant
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7.  Insulin-like growth factor I-releasing alginate-tricalciumphosphate composites for bone regeneration.

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8.  Calcium Sulfate with Stearic Acid as an Encouraging Carrier for Reindeer Bone Protein Extract.

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9.  The synthesis, characterisation and in vivo study of a bioceramic for potential tissue regeneration applications.

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Review 10.  Bone substitutes: a review of their characteristics, clinical use, and perspectives for large bone defects management.

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Journal:  J Tissue Eng       Date:  2018-06-04       Impact factor: 7.813

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