首页> 外文期刊>Journal of Materials Science: Materials in Medicine >In vitro antimicrobial activity of vancomycin-eluting bioresorbable β-TCP-polylactic acid nanocomposite material for load-bearing bone repair
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In vitro antimicrobial activity of vancomycin-eluting bioresorbable β-TCP-polylactic acid nanocomposite material for load-bearing bone repair

机译:万古霉素洗脱生物可吸收β-TCP-聚乳酸纳米复合材料的体外抗菌活性

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Release of antimicrobial agents from bone healing devices can dramatically reduce the risk of implant-associated infection. Here we report the fabrication and antimicrobial activity of a multifunctional load-bearing bioresorbable material that can provide mechanical support to the healing bone all while slowly releasing an antibiotic drug. Dense beta-tricalcium phosphate (β-TCP)–40 vol% polylactic acid (PLA) nanocomposite containing 1 wt% vancomycin (VH) was high pressure consolidated at 2.5 GPa, at room temperature, or at 120 °C. Over the course of 5 weeks in TRIS solution, the β-TCP-PLA-VH nanocomposite released approximately 90 % of its drug load. Specimens consolidated at 120 °C had the highest initial mechanical properties and maintained 85 % of their compressive strength and 30 % of their bending strength after 5 weeks release. In vitro growth inhibition study showed significant antimicrobial efficacy of VH-impregnated β-TCP-PLA against methicillin-resistant Staphylococcus aureus when exposed to both high (2 × 105 CFU/mL) and very high (1 × 108 CFU/mL) bacterial concentrations. After 1 week, total eradication of the microorganisms was achieved. The results suggest that the developed high-strength antibiotic-eluting β-TCP-PLA nanocomposite can be a promising material for orthopedic surgical devices.
机译:从骨愈合装置释放抗菌剂可以显着降低植入物相关感染的风险。在这里,我们报告了多功能承重生物可吸收材料的制造和抗菌活性,该材料可为愈合的骨骼提供机械支持,同时缓慢释放抗生素药物。含有1 wt%万古霉素(VH)的致密β-磷酸三钙(β-TCP)–40体积%聚乳酸(PLA)纳米复合材料在2.5 Gpa,室温或120°C高压固结。在TRIS溶液中经过5周的过程中,β-TCP-PLA-VH纳米复合材料释放了约90%的药物载量。在120°C下固结的样品具有最高的初始机械性能,并在释放5周后保持其抗压强度的85%和抗弯强度的30%。体外生长抑制研究表明,当暴露于高浓度(2×105 CFU / mL)和极高浓度(1×108 CFU / mL)的细菌时,VH浸渍的β-TCP-PLA对耐甲氧西林的金黄色葡萄球菌具有显着的抗菌作用。 1周后,完全清除了微生物。结果表明,开发的高强度抗生素洗脱β-TCP-PLA纳米复合材料可作为骨科手术器械的有前途的材料。

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    Department of Materials Science and Engineering Technion-Israel Institute of Technology">(1);

    Department of Microbiology Rappaport Faculty of Medicine Technion-Israel Institute of Technology">(2);

    Department of Microbiology Rappaport Faculty of Medicine Technion-Israel Institute of Technology">(2);

    Department of Materials Science and Engineering Technion-Israel Institute of Technology">(1);

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