...
首页> 外文期刊>Antimicrobial Resistance and Infection Control >Modern technologies for improving cleaning and disinfection of environmental surfaces in hospitals
【24h】

Modern technologies for improving cleaning and disinfection of environmental surfaces in hospitals

机译:用于改善医院环境表面清洁和消毒的现代技术

获取原文

摘要

Experts agree that careful cleaning and disinfection of environmental surfaces are essential elements of effective infection prevention programs. However, traditional manual cleaning and disinfection practices in hospitals are often suboptimal. This is often due in part to a variety of personnel issues that many Environmental Services departments encounter. Failure to follow manufacturer’s recommendations for disinfectant use and lack of antimicrobial activity of some disinfectants against healthcare-associated pathogens may also affect the efficacy of disinfection practices. Improved hydrogen peroxide-based liquid surface disinfectants and a combination product containing peracetic acid and hydrogen peroxide are effective alternatives to disinfectants currently in widespread use, and electrolyzed water (hypochlorous acid) and cold atmospheric pressure plasma show potential for use in hospitals. Creating “self-disinfecting” surfaces by coating medical equipment with metals such as copper or silver, or applying liquid compounds that have persistent antimicrobial activity surfaces are additional strategies that require further investigation. Newer “no-touch” (automated) decontamination technologies include aerosol and vaporized hydrogen peroxide, mobile devices that emit continuous ultraviolet (UV-C) light, a pulsed-xenon UV light system, and use of high-intensity narrow-spectrum (405?nm) light. These “no-touch” technologies have been shown to reduce bacterial contamination of surfaces. A micro-condensation hydrogen peroxide system has been associated in multiple studies with reductions in healthcare-associated colonization or infection, while there is more limited evidence of infection reduction by the pulsed-xenon system. A recently completed prospective, randomized controlled trial of continuous UV-C light should help determine the extent to which this technology can reduce healthcare-associated colonization and infections. In conclusion, continued efforts to improve traditional manual disinfection of surfaces are needed. In addition, Environmental Services departments should consider the use of newer disinfectants and no-touch decontamination technologies to improve disinfection of surfaces in healthcare.
机译:专家们认为,仔细清洁和消毒环境表面是有效预防感染计划的基本要素。但是,医院中传统的手动清洁和消毒方法通常不是最佳选择。这通常部分是由于许多环境服务部门遇到各种人员问题。不遵循制造商对消毒剂使用的建议,以及某些消毒剂对与医疗保健相关的病原体缺乏抗菌活性,也可能会影响消毒实践的效力。改进的基于过氧化氢的液体表面消毒剂以及包含过氧乙酸和过氧化氢的混合产品是目前广泛使用的消毒剂的有效替代品,电解水(次氯酸)和大气压冷血浆在医院中显示出潜力。通过在医疗设备上涂覆铜或银等金属或使用具有持久抗菌活性表面的液体化合物来创建“自消毒”表面是需要进一步研究的其他策略。较新的“非接触式”(自动)去污技术包括气雾剂和汽化过氧化氢,发出连续紫外(UV-C)光的移动设备,脉冲氙紫外光系统以及使用高强度窄谱(405) ?nm)光。这些“非接触式”技术已被证明可以减少表面细菌的污染。微缩水过氧化氢系统已在多项研究中与减少医疗保健相关的定植或感染相关,而脉冲氙系统减少感染的证据则更为有限。最近完成的一项关于连续UV-C光的前瞻性,随机对照试验应有助于确定该技术可以减少与医疗相关的定植和感染的程度。总之,需要继续努力以改善传统的表面人工消毒方法。此外,环境服务部门应考虑使用更新的消毒剂和非接触式去污技术来改善医疗保健表面的消毒效果。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号