Efficacy of combined disinfection with a nitric oxide donor in controlling biofilm formation on the reverse osmosis water pathway for hemodialysis.

IF 2.5 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES Journal of water and health Pub Date : 2023-10-01 DOI:10.2166/wh.2023.220
Yoshihiro Tange, Ayane Murata, Shigenori Yoshitake
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Abstract

The water treatment system for hemodialysis (HD) is used to treat multiple patients requiring HD simultaneously. This system requires a large amount of purified reverse osmosis (RO) water. However, a major drawback of this method is the formation of biofilms in dialysate pathways. The purpose of this study was to investigate the efficacy of NOC 18, a nitric oxide (NO) donor that can be used at neutral pH, in disinfecting the RO water pathway. Silicone tubes were obtained from the terminal sites of two different HD units. The biofilm coverage and mean biofilm thickness on the tube lumen were evaluated by scanning electron microscopy. The results demonstrated that treatment with NOC 18 alone and in conjunction with sodium hypochlorite reduced biofilm coverage and mean biofilm thickness. Thus, NO donor is a potential disinfectant that enhances bacterial dispersion from biofilms formed on the silicone tube lumen and reduces biofilm coverage and thickness on the RO water pathway at neutral pH. Furthermore, combined disinfection with the NO donor and sodium hypochlorite might enhance biofilmremoval efficacy in clinical practice.

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一氧化氮供体联合消毒对血液透析反渗透水途径生物膜形成的控制效果
血液透析(HD)水处理系统用于同时治疗多例需要血液透析的患者。该系统需要大量纯化的反渗透(RO)水。然而,这种方法的一个主要缺点是在透析途径中形成生物膜。本研究的目的是研究中性pH下一氧化氮(NO)供体NOC - 18对反渗透水途径的消毒效果。硅胶管是从两个不同的HD单元的末端获得的。扫描电镜观察管腔生物膜的覆盖范围和平均生物膜厚度。结果表明,单独使用NOC 18和与次氯酸钠联合处理可降低生物膜覆盖率和平均生物膜厚度。因此,一氧化氮供体是一种潜在的消毒剂,可以增强细菌在硅酮管腔内形成的生物膜上的分散,并在中性ph下减少反渗透水通路上生物膜的覆盖和厚度。此外,一氧化氮供体和次氯酸钠联合消毒可能会在临床实践中提高生物膜的去除效果。
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来源期刊
Journal of water and health
Journal of water and health 环境科学-环境科学
CiteScore
3.60
自引率
8.70%
发文量
110
审稿时长
18-36 weeks
期刊介绍: Journal of Water and Health is a peer-reviewed journal devoted to the dissemination of information on the health implications and control of waterborne microorganisms and chemical substances in the broadest sense for developing and developed countries worldwide. This is to include microbial toxins, chemical quality and the aesthetic qualities of water.
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