Díaz A, López T, Manjarrez J, Basaldella E, Martínez-Blanes J M, Odriozola J A
Departamento de Química Inorgánica e Instituto de Ciencia de Materiales de Sevilla (Centro Mixto CSIC-Universidad de Sevilla), Centro de Investigaciones Científicas Isla de la Cartuja, Spain.
Acta Biomater. 2006 Mar;2(2):173-9. doi: 10.1016/j.actbio.2005.12.006. Epub 2006 Feb 3.
A novel biomaterial (HA-SBA-15) has been developed based on the growth of calcium phosphate hydroxyapatite (HA) nanoparticles within an organized silica structure (SBA-15). Characterization of the material was carried out using a combination of X-ray diffraction, X-ray fluorescence, transmission electron microscopy, N2 adsorption-desorption isotherms and nuclear magnetic resonance. Transmission electron microscopy observations and N2 porosimetry revealed the crystallization of hydroxyapatite nanoparticles inside the mesopore cavities of the silica structure. Specific surface areas of 760 m2 g(-1) and 260 m2 g(-1) were measured for the SBA-15 and the HA-SBA-15 material, respectively. The hydroxyl groups present in the silica nanostructure surface have brought about cationic defects in the silicium sites, mainly with those of tetrahedral symmetry, and promoted the formation of siloxanes. 29Si MAS-NMR analysis shows a significant reduction of the silanol groups concentration with HA growing within the base (SBA-15) material. Studies and brain tissue biocompatibility tests were carried out. Histopathological studies on the SBA-15 implant material showed no changes to the tissue nearby. The results confirmed the synthesis of a silica-based composite containing HA nanoparticles with the potential for biomedical applications.
一种新型生物材料(HA-SBA-15)是基于磷酸钙羟基磷灰石(HA)纳米颗粒在有序二氧化硅结构(SBA-15)内生长而开发的。使用X射线衍射、X射线荧光、透射电子显微镜、N2吸附-脱附等温线和核磁共振相结合的方法对该材料进行了表征。透射电子显微镜观察和N2孔隙率测定揭示了羟基磷灰石纳米颗粒在二氧化硅结构的介孔腔内结晶。SBA-15和HA-SBA-15材料的比表面积分别测定为760 m2 g(-1)和260 m2 g(-1)。二氧化硅纳米结构表面存在的羟基在硅位点产生了阳离子缺陷,主要是四面体对称的缺陷,并促进了硅氧烷的形成。29Si MAS-NMR分析表明,随着HA在基础(SBA-15)材料中生长,硅醇基团浓度显著降低。进行了研究和脑组织生物相容性测试。对SBA-15植入材料的组织病理学研究表明,附近组织没有变化。结果证实了含有HA纳米颗粒的二氧化硅基复合材料的合成,该复合材料具有生物医学应用潜力。