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Application of a Loop-Type Laboratory Biofilm Reactor to the Evaluation of Biofilm for Some Metallic Materials and Polymers such as Urinary Stents and Catheters

机译:回路型实验室生物膜反应器在评估某些金属材料和聚合物(如尿液支架和导管)的生物膜中的应用

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A laboratory biofilm reactor (LBR) was modified to a new loop-type closed system in order to evaluate novel stents and catheter materials using 3D optical microscopy and Raman spectroscopy. Two metallic specimens, pure nickel and cupronickel (80% Cu-20% Ni), along with two polymers, silicone and polyurethane, were chosen as examples to ratify the system. Each set of specimens was assigned to the LBR using either tap water or an NB (Nutrient broth based on peptone from animal foods and beef extract mainly)—cultured solution with E-coli formed over 48–72 h. The specimens were then analyzed using Raman Spectroscopy. 3D optical microscopy was employed to corroborate the Raman Spectroscopy results for only the metallic specimens since the inherent roughness of the polymer specimens made such measurements difficult. The findings suggest that the closed loop-type LBR together with Raman spectroscopy analysis is a useful method for evaluating biomaterials as a potential urinary system.
机译:为了使用3D光学显微镜和拉曼光谱法评估新型支架和导管材料,将实验室生物膜反应器(LBR)修改为新的环形封闭系统。选择了两个金属标本(纯镍和白铜(80%Cu-20%Ni),以及两种聚合物(硅酮和聚氨酯)作为批准该系统的示例。使用自来水或NB(主要基于来自动物食品和牛肉提取物的蛋白N的营养肉汤)将每组标本分配到LBR,培养液在48-72 h内形成大肠杆菌。然后使用拉曼光谱分析样品。由于聚合物样品的固有粗糙度使这种测量变得困难,因此使用3D光学显微镜来证实仅金属样品的拉曼光谱结果。这些发现表明,闭环型LBR结合拉曼光谱分析是一种评估生物材料作为潜在泌尿系统的有用方法。

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