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Titanium coating with mussel inspired polymer and bio-orthogonal chemistry enhances antimicrobial activity against Staphylococcus aureus

机译:具有贻贝的钛涂层灵感的聚合物和生物正交化学增强了对金黄色葡萄球菌的抗微生物活性

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摘要

Implant-associated infections present severe and difficult-to-treat complications after surgery, related to implant biofilm colonization. Systemic administration of antibiotics cannot reach sufficient concentrations at the infected site and may be toxic. Here we describe how mussel-inspired dendritic material coated on a titanium surface can locally activate a prodrug of daptomycin (pro-dapto) to treat methicillin-resistant Staphylococcus aureus. The mechanism of the prodrug activation is based on bio-orthogonal click chemistry between a tetrazine (Tz) and trans-cyclooctene (TCO). The former is attached to the dendritic polymer, while the later converts daptomycin into a prodrug. Characterization of the material's properties revealed that it is hydrophobic, non-toxic, and stable for a prolonged period of time. We envision that the titanium coated dendritic material will be able to improve the treatment of implant-associated infections by concentrating systemically administered antibiotic prodrugs, thus converting them into active localized medicines.
机译:植入物相关的感染在手术后存在严重和难以治疗的并发症,与植入物生物膜定植相关。全身施用抗生素不能在感染的地方达到足够的浓度,并且可能是有毒的。在这里,我们描述了涂覆在钛表面上的贻贝灵感的树突状材料可以局部激活达托霉素(Pro-DAPTO)的前药以治疗耐甲氧脲葡萄球菌。前药物活化的机制基于四嗪(TZ)和反式环辛烯(TCO)之间的生物正交点击化学。前者附着在树枝状聚合物上,而后来将达达霉素转化为前药。物质性质的表征显示,它是疏水性的,无毒的,稳定的延长一段时间。我们设想钛涂覆的树突材料将能够通过浓缩系统施用的抗生素前药来改善植入物相关感染的治疗,从而将它们转化为活性局部药物。

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