首页> 外文期刊>European journal of parenteral & pharmaceutical sciences: the official journal of the ESPC >Airborne microbial monitoring in an operational cleanroom using an instantaneous detection system and high efficiency microbiological samplers
【24h】

Airborne microbial monitoring in an operational cleanroom using an instantaneous detection system and high efficiency microbiological samplers

机译:使用瞬时检测系统和高效微生物采样器,在操作洁净室中进行空气中微生物监测

获取原文
获取原文并翻译 | 示例
           

摘要

The airborne microbial contamination in a non-unidirectional airflow cleanroom, occupied by personnel wearing either full cleanroom attire or only cleanroom undergarments was simultaneously determined using an instantaneous microbial detection (IMD) system and efficient microbial air samplers that detected both aerobic and anaerobic microbes. Depending on the type of cleanroom clothing, the IMD system recorded between 7 to 94 times more 'biological' particles than microbe-carrying particles (MCPs) recovered by the air samplers. Change in the airborne concentration of 'biological' particles due to the different clothing was not consistent with the change in the concentration of MCPs. The median size of the 'biological' particles was smaller than the MCPs and the associated particle size distributions were considerably different. A number of sterile materials in the cleanroom were shown to disperse substantial quantities of 'biological' particles and it was concluded that the number of particles of microbiological origin, and the relationship between the counts of 'biological' particles to MCPs, were masked by non-microbial fluorescent particles dispersed from these materials. Consequently, adequate monitoring of this type of cleanroom operation to confirm appropriate airborne microbiological contamination control, using only an IMD system of the type used for this programme of work, is considered to be unfeasible. However, if the IMD system could be improved to more accurately differentiate between micro-organisms and non-microbial fluorescent particles, or if the dispersion of fluorescent particles from non-microbiological cleanroom materials could be reduced, then this system should provide an effective cleanroom airborne monitoring method.
机译:使用瞬时微生物检测(IMD)系统和可检测需氧和厌氧微生物的高效微生物空气采样器,可同时确定非单向气流洁净室中的空气传播微生物污染,该污染由穿着完整洁净室服装或仅穿着洁净室内衣的人员占据。根据洁净室衣服的类型,IMD系统记录的“生物”颗粒比空气采样器回收的携带微生物的颗粒(MCP)多7到94倍。由于衣着的不同,“生物”颗粒在空气中的浓度变化与MCP浓度的变化不一致。 “生物”颗粒的中值粒径小于MCP,并且相关的粒径分布差异很大。无尘室中的许多无菌材料被证明能散布大量的“生物”颗粒,并且得出结论,微生物来源的颗粒数量以及“生物”颗粒计数与MCP之间的关系被非微生物所掩盖。 -从这些材料分散的微生物荧光颗粒。因此,仅使用用于该工作程序的IMD系统,对这种类型的洁净室操作进行充分监控以确认是否进行了适当的空气传播微生物污染控制被认为是不可行的。但是,如果可以改进IMD系统以更准确地区分微生物和非微生物荧光颗粒,或者可以减少非微生物洁净室材料中荧光颗粒的分散,则该系统应提供有效的机载洁净室监控方法。

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