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Wettability Engineering and Bioactivation of Hydroxyapatite Nanoceramics

机译:羟基磷灰石纳米陶瓷的润湿性工程与生物活化

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The major trends in biotechnology and tissue engineering are development of materials with controlled surface substrates. One of the critical factors influencing adhesion of biocells is wettability properties of the biomimetic materials. Hydrophilicity/hydrophobicity of any solid state surface depends on interfacial physical properties which can be varied by topographic nanostructuring, surface chemical modification and external electric field. We report about new method enabling reversible switching or gradual transition of wettability properties of materials by surface potential modulation. The use of low energy electron irradiation allows achieving tunable wettability of the hydroxyapatite in a wide range of contact angles from 10° to 100° with accuracy of ±3°. Tailoring the gradually varied wettability state in the hydroxyapatite nanoceramics enabled the differential binding of various biological cells as well adhesion of various sorts of bacteria demonstrating their selective immobilization.
机译:生物技术和组织工程的主要趋势是具有受控表面基材的材料的发展。影响生物区粘附的关键因素之一是仿真材料的润湿性。任何固态表面的亲水性/疏水性取决于界面物理性质,其可以通过地形纳米结构,表面化学改性和外部电场而变化。我们报告了通过表面电位调制通过表面电位调制实现了新方法,从而实现了材料的可逆切换或逐渐过渡的材料。低能电子照射的使用允许在宽范围的接触角下实现羟基磷灰石的可调性,精度为±3°。在羟基磷灰石纳米纳米纳米菌民中纵向变化的润湿性状态使各种生物细胞的差异结合具有各种细菌的粘附,证明其选择性固定。

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