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Compressive properties and degradability of poly(epsilon-caprolatone)/hydroxyapatite composites under accelerated hydrolytic degradation
Journal article   Peer reviewed

Compressive properties and degradability of poly(epsilon-caprolatone)/hydroxyapatite composites under accelerated hydrolytic degradation

K C Ang, K F Leong, C K Chua and M Chandrasekaran
Journal of biomedical materials research. Part A, Vol.80(3), pp.655-660
01/03/2007
PMID: 17051539

Abstract

Biocompatible Materials - chemistry Biocompatible Materials - standards Composite Resins - chemistry Composite Resins - standards Compressive Strength Hydrolysis Hydroxyapatites Materials Testing Mechanics Polyesters Tissue Engineering - methods
Hydroxyapatite (HA) was incorporated as filler into polycaprolactone (PCL) matrix to improve the bioactivity as well as the compressive properties of the polymer composites that can be typically used in tissue engineering scaffolds. The compressive properties of five PCL/HA composites of different compositions were investigated in conjunction with the study of their rate of degradation. As PCL has a slow degradation rate, the experiment was conducted in a concentrated 5M sodium hydroxide medium to accelerate the degradation process. The compressive strength and modulus of all PCL/HA compositions were observed to decrease as the degradation experiment progressed, with samples having high HA content degraded most significantly as compared with samples with lower HA content. Pure PCL samples, however, were found to retain their mechanical properties comparatively well in the same degradation experiments. Although the addition of HA as filler into the PCL matrix was shown to have improved mechanical properties and bioactivity initially, these results do raise concerns of material properties being compromise during hydrolytic degradation.

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