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Characterization of the developed antimicrobial urological catheters.

机译:研制的抗菌泌尿外科导管的特性。

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Antimicrobial urological catheters were developed by the mixed, covalent and non-covalent binding of sparfloxacin (SPA) to heparin (HP) film which was first deposited on the latex surface of biomaterial. The SPA-HP modified surface was characterized by SEM analysis and ATR-Fourier transform infrared spectroscopy. For the antimicrobial prevention, SPA as an antibiotic with a broad antimicrobial spectrum was chosen. Antimicrobial activity of antibiotic-modified catheter against Staphylococcus aureus, Staphylococcus epidermidis and Escherichia coli strains was assessed using various procedures. On the basis of the inhibition zone and diffusion assays the efficacy around the modified catheters was demonstrated. The test samples clearly showed an antibacterial activity against all tested bacterial stains for a least one month. Inhibition of the bacterial colonization on the modified catheter surface was proved by the biofilm test. Antimicrobial activity of SPA-treated catheter surface was also quantitatively evaluated according to standard method of ISO based on JIS. The R-values were found to be higher than 3.8. The performed research indicated that the immobilization of SPA on the catheter surface by means of the mixed-type bonds resulted in stable antibacterial protection of the urological catheters for a long time.
机译:通过将司帕沙星(SPA)与肝素(HP)膜混合,共价和非共价结合来开发抗菌泌尿导管,该膜首先沉积在生物材料的乳胶表面上。通过SEM分析和ATR-Fourier变换红外光谱对SPA-HP改性的表面进行表征。为了进行抗菌预防,选择了SPA作为具有广泛抗菌谱的抗生素。使用各种程序评估了抗生素修饰的导管对金黄色葡萄球菌,表皮葡萄球菌和大肠杆菌菌株的抗菌活性。基于抑制区和扩散测定法,证明了改进的导管周围的功效。测试样品清楚地显示出对所有测试细菌污渍的抗菌活性至少一个月。通过生物膜测试证明了在经修饰的导管表面上细菌定植的抑制。还根据基于JIS的ISO标准方法对SPA处理过的导管表面的抗菌活性进行了定量评价。发现R值高于3.8。进行的研究表明,通过混合型键将SPA固定在导管表面上,可长期对泌尿科导管进行稳定的抗菌保护。

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