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Competitive Surface Colonization of Antibacterial and Bioactive Materials Doped with Strontium and/or Silver Ions

机译:锶和/或银离子掺杂的抗菌和生物活性材料的竞争性表面定殖

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摘要

Nowadays, there is a large amount of research aimed at improving the multifunctional behavior of the biomaterials for bone contact, including the concomitant ability to induce apatite formation (bioactivity), fast and effective osteoblasts colonization, and antibacterial activity. The aim of this study is to develop antibacterial and bioactive surfaces (Ti6Al4V alloy and a silica-based bioactive glass) by chemical doping with strontium and/or silver ions. The surfaces were characterized by Scanning Electron Microscopy equipped with Energy Dispersive X ray Spectroscopy (SEM-EDS), X-ray photoelectron spectroscopy (XPS), and Transmission Electron Microscopy (TEM). To better focus on the cells–bacteria competition for the implant surface, in addition to the standard assays for the evaluation of the bacteria adhesion (ISO22196) and for single-cell cultures or biofilm formation, an innovative set of co-cultures of cells and bacteria is here proposed to simulate a competitive surface colonization. The results suggest that all the bioactive tested materials were cytocompatible toward the bone progenitor cells representative for the self-healing process, and that the doped ones were effective in reducing the surface colonization from a pathogenic drug-resistant strain of . The co-cultures experiments demonstrated that the doped surfaces were able to protect the adhered osteoblasts from the bacteria colonization as well as prevent the infection prior to the surface colonization by the osteoblasts.
机译:如今,有大量研究旨在改善生物材料与骨骼接触的多功能行为,包括伴随的诱导磷灰石形成的能力(生物活性),快速有效的成骨细胞定植以及抗菌活性。这项研究的目的是通过锶和/或银离子的化学掺杂来开发抗菌和生物活性表面(Ti6Al4V合金和二氧化硅基生物活性玻璃)。通过配备有能量分散X射线光谱法(SEM-EDS),X射线光电子光谱法(XPS)和透射电子显微镜法(TEM)的扫描电子显微镜来表征表面。为了更好地关注植入物表面的细胞-细菌竞争,除了用于评估细菌粘附力的标准测定法(ISO22196)以及用于单细胞培养或生物膜形成的标准测定法之外,还有一套创新的细胞与细菌共培养方法在此提出细菌以模拟竞争性表面定殖。结果表明,所有经生物活性测试的材料均对代表自我修复过程的骨祖细胞具有细胞相容性,并且掺杂的材料可有效减少致病性耐药菌株的表面定植。共培养实验表明,掺杂的表面能够保护粘附的成骨细胞免受细菌定植,并防止成骨细胞在表面定植之前受到感染。

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