In Vitro Biomineralization and Bulk Characterization of Chitosan/Hydroxyapatite Composite Microparticles Prepared by Emulsification Cross-Linking Method: Orthopedic Use

被引:10
作者
Maachou, Hamida [1 ]
Bal, Kheireddine [2 ]
Bal, Youcef [3 ]
Chagnes, Alexandre [4 ]
Cote, Gerard [4 ]
Aliouche, Djamel [1 ]
机构
[1] MHamed Bougara Univ, Lab Traitement & Mise Forme Polymeres Fibreux, Boumerdes 35000, Algeria
[2] Saad Dahlab Univ, Lab Chim Phys Mol & Macromol, Blida 09000, Algeria
[3] Yahia Fares Univ, LBPT, Medea 26000, Algeria
[4] Univ Paris 06, Ecole Natl Super Chim Paris, Lab Electrochim & Chim Analyt UMR CNRS 7575, F-75231 Paris, France
关键词
Hydroxyapatite; Chitosan; Microparticle; Composite; Emulsification; Biomineralization; CHITOSAN POLYELECTROLYTE COMPLEX; PHOSPHORYLATED CHITOSAN; CARBONATE SUBSTITUTION; HYDROXYAPATITE; BONE; BIOACTIVITY; NANOCOMPOSITES; MICROSPHERES; REGENERATION; SCAFFOLDS;
D O I
10.1007/s12010-012-9870-x
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Chitosan/hydroxyapatite composite microparticles were prepared by a solid-in-water-in-oil emulsification cross-linking method. The characteristics and activity in presence of simulated body fluid for 14 and 21 days were investigated. The size distribution, surface morphology, and microstructure of these biomaterials were evaluated. The scanning electron microscopy revealed an aggregate of microparticles with a particle size, ranged from 4 to 10 mu m. The deposited calcium phosphate was studied using X-ray diffraction analysis, Fourier transform infrared spectroscopy, and inductively coupled plasma/atomic emission spectroscopy analysis of phosphorus. These results show that the mineral, formed on microparticles, was a mixture of carbonated hydroxyapatite and calcite. Scanning electron microscopy revealed that calcium phosphate crystals growth was in form of rods organized as concentric triangular packets interconnected to each other by junctions. Interaction between chitosan and growing carbonated hydroxyapatite and calcite crystals are responsible for a composite growth into triangular and spherical shapes. The results demonstrated that these microparticles were potential materials for bone repair.
引用
收藏
页码:1459 / 1475
页数:17
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