Title of article :
Preparation and characterization of dense nanohydroxyapatite/PLLA composites
Author/Authors :
Gay، نويسنده , , Sandrine and Arostegui، نويسنده , , Saioa and Lemaitre، نويسنده , , Jacques، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
6
From page :
172
To page :
177
Abstract :
Synthetic bone graft substitutes based on PLLA have been largely studied during the past decade. PLLA/hydroxyapatite composites appear as promising materials for large bone defect healing. In this study dense PLLA/nano-hydroxyapatite composites were prepared by hot pressing. Dense samples were investigated rather than porous scaffolds, in order to shed light on possible correlations between intrinsic mechanical properties and nano-hydroxyapatite concentration. Hydroxyapatite deagglomerated by wet attrition milling, and further dispersed into chloroform was used (median diameter = 80 nm). Particle size distribution measurements and transmission electron microscopy show evidence that particle size and dispersion are maintained throughout the successive steps of composite processing. Mechanical properties were tested (uni-axial and diametral compression tests) as a function of nano-hydroxyapatite content. Increasing concentrations of nano-hydroxyapatite (0, 25 and 50 wt.%) increase the Youngʹs modulus and the mechanical strength of the composite; at the same time, the failure mechanism of the material changes from plastic to brittle. Youngʹs modulus over 6 GPa and uniaxial compressive strength over 100 MPa have been achieved. These values expressed in terms of intrinsic tensile and shear strengths indicate that 50 wt.% nano-hydroxyapatite containing samples develop properties comparable to those of cortical bone. PLLA/nano-hydroxyapatite composites are thus promising candidates to develop bioresorbable porous bone substitutes showing superior mechanical performance.
Keywords :
Bone substitute , mechanical properties , PLLA , Nano-hydroxyapatite , Dense composite
Journal title :
Materials Science and Engineering C
Serial Year :
2009
Journal title :
Materials Science and Engineering C
Record number :
2099846
Link To Document :
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