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Silver-coated nylon fiber as an antibacterial agent.

机译:涂银尼龙纤维作为抗菌剂。

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摘要

A blend of nylon fiber and silver-coated nylon fiber (the latter known as X-static) was used in these experiments. This fiber was bactericidal when bacteria were exposed to it directly or to an extract derived from its prior incubation in salt solution. At ambient temperatures, a rapid exponential decrease of survival occurred, usually after a delay of approximately 1 h. The rate of killing (decrease of survival) increased with an increase in X-static percentage of the fiber blend, temperature of fiber extraction, concentration of Tris buffer present during extraction, and temperature at which bacteria were exposed to the extract. When bacteria were exposed to the extract at 37 degrees C as opposed to ambient temperature, there was no delay in onset of killing. Escherichia coli was generally the indicator organism tested, but comparable results were also found for Pseudomonas, Klebsiella, Staphylococcus, and Streptococcus species. The rate of killing increased with increasing silver ion concentration of the fiber extract, as determined through atomic absorption spectrophotometry. The rate of killing was greater and the onset was earlier with an extract containing silver ions from fiber than with a salt solution containing the same concentration of silver ions from silver nitrate. Studies of the kinetics of ion release suggested that X-static may be an effective, sustained-release antibacterial agent.
机译:在这些实验中,使用了尼龙纤维和涂银尼龙纤维(后者称为X-static)的混合物。当细菌直接暴露于该纤维或暴露于先前在盐溶液中孵育而得的提取物时,该纤维具有杀菌作用。在环境温度下,通常会延迟大约1小时后,生存率会迅速呈指数下降。杀死率(存活率降低)随着纤维混合物的X静态百分比,纤维提取温度,提取过程中存在的Tris缓冲液浓度以及细菌暴露于提取物的温度的增加而增加。当细菌在37摄氏度(而不是环境温度)下暴露于提取物时,没有延迟开始杀灭。大肠杆菌通常是测试的指示生物,但假单胞菌,克雷伯菌,葡萄球菌和链球菌也有可比的结果。通过原子吸收分光光度法测定,杀死率随着纤维提取物中银离子浓度的增加而增加。含有来自纤维的银离子的提取物比含有相同浓度的来自硝酸银的银离子的盐溶液的杀灭率更高,起效更早。对离子释放动力学的研究表明,X-静电可能是一种有效的缓释抗菌剂。

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