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首页> 外文期刊>Applied Surface Science >Theoretical and experimental study of the incorporation of tobramycin and strontium-ions into hydroxyapatite by means of co-precipitation
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Theoretical and experimental study of the incorporation of tobramycin and strontium-ions into hydroxyapatite by means of co-precipitation

机译:共沉淀法将妥布霉素和锶离子掺入羟磷灰石的理论和实验研究

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摘要

Antibiotic incorporation into hydroxyapatite (HA) coatings by co-precipitation and the impact of bone relevant doping elements on the adsorption kinetics are investigated from both theoretical and experimental points of view. Tobramycin interactions with bioactive TiO_2 and HA surfaces are analyzed using density functional theory. According to the calculations, the drug molecule has larger adsorption energy than the Ca~+ ion on both surfaces under study in Phosphate Buffered Saline (PBS). The results support the experimental observations that HA nucleation and growth are strongly limited on TiO_2 surfaces in the presence of clinically relevant antibiotic concentrations in PBS. The drug molecule is more likely to adopt parallel arrangement onto the HA surface, as the adsorption energy of such arrangement is higher compared to a perpendicular one. Strontium substitution of the HA surface is found to results in a weaker drug-surface interaction, and leads also to a decrease in coating thickness. However, the presence of strontium gives rise to a coating morphology with enhanced drug incorporation capacity and slower antibiotic release compared to non-substituted, co-precipitated counterparts. Our theoretical calculation results were found to be in excellent agreement with experimental data and provide a powerful tool to understand the interaction mechanism between drug and different surface chemistries necessary for development of future versatile orthopedic and dental implant surfaces.
机译:从理论和实验的角度研究了通过共沉淀将抗生素掺入羟基磷灰石(HA)涂层中以及骨相关掺杂元素对吸附动力学的影响。使用密度泛函理论分析妥布霉素与生物活性TiO_2和HA表面的相互作用。根据计算,在磷酸盐缓冲盐溶液(PBS)中,药物分子在两个表面上的吸附能量均大于Ca〜+离子。结果支持了实验观察,即在存在临床上相关的抗生素浓度的PBS中,HA的成核和生长在TiO_2表面上受到很大限制。药物分子更可能采用平行排列在HA表面上,因为与垂直排列相比,这种排列的吸附能更高。发现HA表面的锶取代导致较弱的药物表面相互作用,并且还导致涂层厚度降低。然而,与未取代的,共沉淀的对应物相比,锶的存在产生了具有增强的药物结合能力和较慢的抗生素释放的涂层形态。我们的理论计算结果与实验数据非常吻合,并为理解药物与不同表面化学物质之间的相互作用机理提供了强大的工具,这对于开发未来的多功能骨科和牙科植入物表面是必不可少的。

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  • 来源
    《Applied Surface Science》 |2014年第30期|376-383|共8页
  • 作者单位

    Applied Materials Physics, Department of Materials and Engineering, Royal Institute of Technology (KTH), S 100 44 Stockholm, Sweden;

    Division for Nanotechnology and Functional Materials, The Angstroem Laboratory, Uppsala University, 751 21 Uppsala, Sweden,Sandvik Coromant Sverige AB, 12680 Stockholm, Sweden;

    Applied Materials Physics, Department of Materials and Engineering, Royal Institute of Technology (KTH), S 100 44 Stockholm, Sweden;

    Department of Pharmaceutics and Biopharmaceutics, Christian Albrecht University Kiel, Kiel, Germany;

    Department of Pharmaceutics and Biopharmaceutics, Christian Albrecht University Kiel, Kiel, Germany;

    Condensed Matter Theory, Uppala University, Sweden;

    Division for Nanotechnology and Functional Materials, The Angstroem Laboratory, Uppsala University, 751 21 Uppsala, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hydroxyapatite; Tobramycin; Co-precipitation; Strontium; Antibiotic release; Adsorption energy;

    机译:羟基磷灰石;妥布霉素;共沉淀;锶;抗生素释放;吸附能;

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