首页> 外文期刊>Neurological Research: An Interdisciplinary Quarterly Journal >Silver segregation and bacterial growth of intraventricular catheters impregnated with silver nanoparticles in cerebrospinal fluid drainages.
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Silver segregation and bacterial growth of intraventricular catheters impregnated with silver nanoparticles in cerebrospinal fluid drainages.

机译:脑脊液引流中含银纳米颗粒的脑室内导管中的银分离和细菌生长。

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OBJECTIVES: Intraventricular catheters impregnated with silver nanoparticles are developed to reduce catheter-associated infections in cerebrospinal fluid (CSF) drainages. Silver released from these new catheters should have an anti-microbacterial effect. This study examines the silver ion release and a potential effect of bacterial growth in an in vitro experiment. METHODS: Seven original silver-coated ventricle catheters were rinsed thoroughly with an artificial CSF for 6 days. The collecting containers were replaced every 24 hours. In these samples, ion concentrations of silver were determined via trace analysis through atomic absorption spectroscopy. Furthermore, a bacterial growth was conducted on silver-impregnated and non-impregnated catheters. RESULTS: In none of the samples, a concentration of silver ions could be detected. For Staphylococcus aureus, a slightly decreased bacterial growth could be observed with silver-impregnated catheters. DISCUSSION: There is no risk of a toxic effect due to silver release into the CSF. However, the in vivo antibacterial effect has to be further investigated. We recommend clinical trials to prove the oligodynamic and anti-microbacterial effects of silver-impregnated ventricular catheters.
机译:目的:浸渍银纳米粒子的脑室内导管的开发,以减少脑脊髓液(CSF)引流中与导管相关的感染。从这些新导管释放的银应具有抗菌作用。这项研究在体外实验中研究了银离子的释放以及细菌生长的潜在影响。方法:用人工脑脊液彻底冲洗七个原来的镀银心室导管6天。每24小时更换一次收集容器。在这些样品中,银的离子浓度是通过原子吸收光谱法进行痕量分析确定的。此外,细菌的生长是在浸银和未浸银的导管上进行的。结果:在所有样品中,均未检测到银离子浓度。对于金黄色葡萄球菌,用浸银的导管可观察到细菌生长略有减少。讨论:由于银释放到脑脊液中没有毒性作用的风险。但是,体内抗菌作用必须进一步研究。我们建议进行临床试验,以证明银浸渍的心室导管的微动力学和抗菌作用。

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