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Comparison of methods for determining the effectiveness of antibacterial functionalized textiles

机译:确定抗菌功能化纺织品有效性的方法比较

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摘要

Antimicrobial functionalization of textiles is important for various applications, such as protection of textile materials from decomposition, generation of more effective wound dressings, and the prevention of infections or malodors resulting from bacterial growth. In order to test the efficacy of new products, their antibacterial activity needs to be evaluated. At present, several different procedures are being used for this purpose, hindering comparisons among different studies. The present paper compares five of these assays using a sample panel of different textiles functionalized with copper (Cu) and silver (Ag) as antibacterial agents, and discusses the suitability of these methods for different analytical requirements. Bacterial viability was determined by measuring the optical density at 600 nm, a colorimetric assay based on MTT (3-[4, 5-dimethylthiazol-2-yl]-2, 5 diphenyl tetrazolium bromide) conversion, an agar diffusion assay, and colony formation, either after culturing in media containing textile samples, or after recovery from textiles soaked with bacterial suspension. All experiments were performed with a Gram-negative (Escherichia coli) and a Gram-positive (Staphylococcus warneri) model organism. In general, the results yielded by the different methods were of good comparability. To identify the most suitable test system for the particular type of antibacterial coating, several factors need to be taken into account, such as choosing appropriate endpoints for analyzing passive or active antibacterial effects, selection of relevant microorganisms, correcting for potential interference by leaching of colored textile coatings, required hands on time, and the necessary sensitivity.
机译:纺织品的抗菌功能化对于各种应用非常重要,例如保护纺织品材料免于分解,产生更有效的伤口敷料以及防止细菌滋生引起的感染或恶臭。为了测试新产品的功效,需要评估其抗菌活性。目前,为此目的使用了几种不同的程序,阻碍了不同研究之间的比较。本文比较了使用铜(Cu)和银(Ag)作为抗菌剂功能化的不同纺织品的样品板进行的五种分析方法,并讨论了这些方法对不同分析要求的适用性。通过测量600 nm处的光密度,基于MTT(3- [4,5-二甲基噻唑-2-基] -2、5-二苯基溴化四唑)转化的比色测定,琼脂扩散测定和菌落来测定细菌生存力在含有纺织品样品的培养基中培养后,或从浸有细菌悬浮液的纺织品中回收后,形成。所有实验均用革兰氏阴性(大肠杆菌)和革兰氏阳性(葡萄球菌)模型生物进行。通常,通过不同方法得出的结果具有良好的可比性。为了针对特定类型的抗菌涂层确定最合适的测试系​​统,需要考虑几个因素,例如选择适当的端点来分析被动或主动抗菌作用,选择相关微生物,通过浸出有色物质来纠正潜在的干扰。纺织涂料,要求的手动操作时间和必要的灵敏度。

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