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在具有抗生物膜功能的硅酮涂层中对一类新型三烷基去甲精胺-联苯抗生素进行体外测试。

In vitro testing of a first-in-class tri-alkylnorspermidine-biaryl antibiotic in an anti-biofilm silicone coating.

机构信息

George E. Wahlen Department of Veterans Affairs, Salt Lake City, UT, United States; Department of Orthopaedics, University of Utah, Salt Lake City, UT, United States.

Curza Global, LLC, Salt Lake City, UT, United States; Synthetic and Medicinal Chemistry Core, University of Utah, Salt Lake City, UT, United States.

出版信息

Acta Biomater. 2019 Jul 15;93:25-35. doi: 10.1016/j.actbio.2019.02.010. Epub 2019 Feb 12.

Abstract

Biofilm-related infection is among the worst complication to prosthetic joint replacement procedures; once established on the implant surface, biofilms show strong recalcitrance to clinical antibiotic therapy, frequently requiring costly revision procedures and prolonged systemic antibiotics for their removal. A well-designed active release coating might assist host immunity in clearing bacterial contaminants within the narrow perioperative window and ultimately prevent microbial colonization of the joint prosthesis. A first-in-class compound (CZ-01127) was tested as the active release agent in a silicone (Si) coating using an in vitro dynamic flow model of surgical site contamination and compared with analogous coatings containing clinical gold-standard antibiotics vancomycin and gentamicin; the CZ-01127 coating outperformed both vancomycin and gentamicin coatings and was the only to decrease the methicillin-resistant Staphylococcus aureus (MRSA) inocula below detectable limits for the first 3 days. The antimicrobial activity of CZ-01127, and for comparison vancomycin and gentamicin, were characterized against both planktonic and biofilm MRSA using the minimum inhibitory concentration (MIC) assay, serial passages, and serial dilution tests against established biofilms grown with a CBR 90 CDC biofilm reactor. Despite a similar MIC (1 µg/ml) and behavior in a 25-day serial passage analysis, CZ-01127 displayed much greater bactericidal activity against established biofilms and was the only to decrease biofilm colony forming units (CFUs) below detectable limits at the highest concentration tested (500 µg/ml). Coating release profiles were characterized using ATR-FTIR and displayed burst release kinetics within the decisive period of the perioperative window suggesting the silicon carrier is broadly useful for screening antibiotic compound for local delivery applications. STATEMENT OF SIGNIFICANCE: With an aging population, an increasing number of people are undergoing total joint replacement procedures in which diseased joint tissues are replaced with permanent metallic implants. Some of these procedures are burdened by costly and debilitating infections. A promising approach to prevent infections is the use of an antimicrobial coating on the surface of the implant which releases antibiotics into the surgical site to prevent infection. In this study, we tested a new antibiotic compound formulated in a silicone coating. Data showed that this compound was more effective at killing pathogenic methicillin resistant Staphylococcus aureus (MRSA) bacteria than two clinical gold-standard antibiotics-vancomycin and gentamicin-and could be a promising agent for antimicrobial coating technologies.

摘要

生物膜相关感染是人工关节置换术最严重的并发症之一;一旦在植入物表面形成生物膜,就会对临床抗生素治疗产生很强的抗药性,通常需要昂贵的翻修手术和长时间的全身抗生素治疗来清除。设计良好的主动释放涂层可能有助于宿主免疫清除手术部位污染的细菌污染物,并最终防止关节假体的微生物定植。一种首创化合物(CZ-01127)在硅(Si)涂层中作为主动释放剂进行了测试,该涂层使用了手术部位污染的体外动态流动模型,并与含有临床金标准抗生素万古霉素和庆大霉素的类似涂层进行了比较;CZ-01127 涂层的性能优于万古霉素和庆大霉素涂层,并且是唯一一种在前 3 天内将耐甲氧西林金黄色葡萄球菌(MRSA)接种物降低到可检测限以下的涂层。使用最低抑菌浓度(MIC)测定法、连续传代和使用 CBR 90 CDC 生物膜反应器培养的已建立生物膜的连续稀释试验,对 CZ-01127 以及比较万古霉素和庆大霉素的抗浮游和生物膜 MRSA 的抗菌活性进行了表征。尽管 MIC(1μg/ml)相似,并且在 25 天的连续传代分析中表现相似,但 CZ-01127 对已建立的生物膜显示出更强的杀菌活性,并且是唯一一种在测试的最高浓度(500μg/ml)下将生物膜集落形成单位(CFU)降低到可检测限以下的药物。使用衰减全反射傅里叶变换红外光谱(ATR-FTIR)对涂层释放曲线进行了表征,并显示出在围手术期关键时期内的爆发释放动力学,这表明硅载体广泛适用于筛选局部递送应用的抗生素化合物。意义声明:随着人口老龄化,越来越多的人接受全关节置换手术,用永久性金属植入物替换患病的关节组织。其中一些手术受到昂贵且使人虚弱的感染的困扰。预防感染的一种有前途的方法是在植入物表面使用抗菌涂层,该涂层将抗生素释放到手术部位以预防感染。在这项研究中,我们测试了一种新的抗生素化合物,该化合物在硅涂层中进行了配方。数据显示,与两种临床金标准抗生素-万古霉素和庆大霉素相比,这种化合物在杀死致病性耐甲氧西林金黄色葡萄球菌(MRSA)细菌方面更有效,并且可能是一种有前途的抗菌涂层技术药物。

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