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Synthesis Of Ca-p Nanoparticles And Fabrication Of Ca-p/phbv Nanocomposite Microspheres For Bone Tissue Engineering Applications

机译:Ca-p纳米粒子的合成及Ca-p / phbv纳米复合微球的制备,用于骨组织工程应用

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As the first step in producing totally bioresorbable osteoconductive composite scaffolds for bone tissue engineering using the selective laser sintering technology, bioresorbable nanoparticles of calcium phosphate (Ca-P) similar in composition to β-tricalcium phosphate were synthesized and Ca-P nanoparticle filled poly(hydroxybutyrate-co-hydroxyvalerate) (PHBV) microspheres were fabricated. The pH of the chemical reaction for Ca-P particle synthesis was found to have significant effects on the morphology and chemical composition of Ca-P precipitated. Ca-P particles produced at the pH of 10.0-11.0 were amorphous, had a Ca:P molar ratio of about 1.5, were spherical in shape and had sizes in the range of 10-30 nm. The Ca-P particles were used to form Ca-P nanocomposite microspheres through a solid-in-oil-in-water (S/O/W) emulsion solvent evaporation process. Ca-P nanoparticles were mostly encapsulated inside the microspheres and some Ca-P nanoparticles were superficially embedded on the microspheres. The Ca-P/PHBV microspheres had an average diameter of about 48 μm which is suitable for selective laser sintering for constructing osteoconductive composite scaffolds.
机译:作为使用选择性激光烧结技术生产用于骨组织工程的完全可生物吸收的骨传导复合材料支架的第一步,合成了组成类似于β-磷酸三钙的可生物吸收的磷酸钙(Ca-P)纳米颗粒,并填充了Ca-P纳米颗粒制备了羟基丁酸酯-共羟基戊酸酯(PHBV)微球。发现用于Ca-P颗粒合成的化学反应的pH对沉淀的Ca-P的形态和化学组成具有显着影响。 pH为10.0-11.0时产生的Ca-P颗粒是无定形的,Ca:P摩尔比约为1.5,呈球形,尺寸在10-30 nm之间。 Ca-P颗粒用于通过水包油中固体(S / O / W)乳液溶剂蒸发工艺形成Ca-P纳米复合微球。 Ca-P纳米粒子主要封装在微球内部,而一些Ca-P纳米粒子则表面上嵌入微球。 Ca-P / PHBV微球的平均直径为约48μm,适用于选择性激光烧结以构建骨传导复合支架。

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