首页> 外文会议>World congress on medical physics and biomedical engineering;International congress of the IUPESM >Electrically Functionalized Hydroxyapatite and Calcium Phosphate Surfaces to Enhance Immobilization and Proliferation of Osteoblasts In Vitro and Modulate Osteogenesis In Vivo
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Electrically Functionalized Hydroxyapatite and Calcium Phosphate Surfaces to Enhance Immobilization and Proliferation of Osteoblasts In Vitro and Modulate Osteogenesis In Vivo

机译:电功能化羟基磷灰石和磷酸钙表面增强体外成骨细胞的固定和增殖并调节体内成骨作用

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Hydroxyapatite (HAP) is used to fabricate implants for bone repair in dentistry and orthopaedics. To functionalise the surface of HAP that is in direct contact with human cells a surface electrical charge deposition has been achieved by means of hydrogenation technology. This technology provides uniform 3 dimensioned processing of the specimen surfaces. The engineered charge was estimated from measurements of the photoelectron emission work function (). The later was increased to ~ 0.2 eV. The negatively charged HAP surface attached 10 times more osteoblatic cells and increased their proliferation capacity 1.6 times, in contrast to the uncharged one.The above increment of had an effect on the differentiation of mesenchymal stromal cell pool (MSCP) immobilized on the calcium phosphate (CP) coatings. In vivo experiments (BALB/c mice) demonstrated that hydrogenation of CP coatings could effect MSCP differentiation into fibroblasts or osteoblasts. The technique of intracellular RNA staining detected the actively synthesizing osteoblasts and bone marrow stromal cells.
机译:羟基磷灰石(HAP)用于制造种植体,用于牙科和整形外科的骨修复。为了使与人类细胞直接接触的HAP表面功能化,已经通过氢化技术实现了表面电荷沉积。这项技术可对样本表面进行统一的3维处理。根据光电子发射功函数(

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