贝壳制备纳米羟基磷灰石并与金混合修复兔下颌骨骨缺损

G. Taqa, Banan N. Al-Hussary, Nazhan Th. Kashmola
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引用次数: 1

摘要

本研究的目的是将贝壳制备羟基磷灰石粉末,并将其转化为纳米尺寸,然后添加到金纳米颗粒中。材料与方法:对海贝进行清洗,加磷酸处理。将产品放入烘箱中,然后在密闭炉中煅烧,蒸发CO2,得到白色结晶粉末,表明存在羟基磷灰石。这种粉末被转化为纳米颗粒。1%金与制备的贝壳纳米羟基磷灰石混合。采用红外光谱法对贝壳制备的纳米羟基磷灰石进行了表征。通过化学试验评价生物相容性最佳的纳米羟基磷灰石,并在体内检测单独制备的纳米羟基磷灰石或与1%金混合制备的纳米羟基磷灰石对兔下颌骨缺损的修复效果。结果:对制备的纳米羟基磷灰石进行红外光谱测试,结果表明制备的纳米羟基磷灰石与标准纳米羟基磷灰石具有相同的红外光谱结构和波段,与化学测试显示的nHA贝壳中存在黄色沉淀具有相同的纳米特征。对兔骨缺损修复的生物相容性及提高骨密度的指示作用。在纳米羟基磷灰石中加入金后,骨重塑和骨修复的功效增加。结论:以海贝为原料制备羟基磷灰石纳米颗粒的方法简单,成本低廉,采用磷酸溶液化学沉淀法可成功制备。
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Preparing of Nano-Hydroxyapatite from Seashell and Mixed with Gold to Repair Bony Defect of Mandibular Bone in Rabbits
The objectives of the present study were undertaken to prepared hydroxyapatite powder from seashell and convert this to nano size and then added to gold nanoparticles. Materials and Methods: The seashells was cleaned and the phosphoric acid was added. The product was inserted in oven then calcined in the muffled furnace, to evaporate CO2 and getting the white crystalline powder which indicated presence of hydroxyapatite. This powder was converted to nanoparticle. Gold 1% mixed with prepared seashell nano hydroxyapatite. The characteristics of the prepared nano hydroxyapatite from seashell, were studied by the FTIR infrared spectrophotometer. The most biocompatible nano hydroxyapatite estimation by chemical test and examine prepared nano hydroxyapatite from seashell alone or when mixed with gold 1% in vivo to detect the effectiveness on reparing bone defect in mandibulare rabbits. Results: The results of an infrared measurement (FTIR Spectroscopy) for prepared nano hydroxyapatite showed that the chemical structure and band have the same FTIR spectrum of standard nano hydroxyapatite and have the same nano traits as the chemical test showed a yellow precipitation consisting in the nHA seashells. As an indication of biocompatibility and increase Bone Mineral Density by repairing bone defect in rabbits. And when added gold to nano hydroxyapatite, increased the efficacy of bone remodeling and repair bone. Conclusions: The possibility of preparing nanoparticles for hydroxyapatite from seashell are simple and inexpensive feedstock's and can be successfully produced by chemical precipitation technology from seashells with a phosphoric acid solution.
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