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In-line microbial monitor for the analysis of recycled water aboard the ISS: issues and prospects

机译:在线微生物监测监测器分析可循环水资源:问题和前景

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The monitoring of spacecraft life support systems for the presence of health threatening microorganisms is paramount for crew well being and successful completion of missions. The union of the molecular biology techniques of DNA probe hybridization and polymerase chain reaction (PCR) offers a powerful method for the detection, identification, and quantification of microorganisms and viruses. This report is an evaluation of the state of PCR science at it applies to the needs of NASA to develop a microbiology monitor for use aboard spacecraft, and a set of recommendations as to the design of a PCR-based microbial monitor for recycled water aboard the ISS. Issues pertinent to the development of a PCR-based microbial monitor for reclaimed water on the ISS are discussed including: (1) instrumentation and chemistry for quantitative PCR, (2) the inability of PCR to distinguish between viable and non-viable microorganisms, (3) possible PCR inhibitors in ISS water, (4) methods of pre-PCR sample concentration and preparation, (5) what microorganisms need to be monitored, and (6) development of the DNA probes a PCR-based monitor would need to identify potentially dangerous microbial contaminants.
机译:对健康威胁微生物的存在的航天器寿命支持系统的监测对于船员来说至关重要,并且成功完成任务是至关重要的。 DNA探针杂交和聚合酶链反应(PCR)的分子生物学技术的结合提供了用于检测,鉴定和定量微生物和病毒的强大方法。本报告是对PCR科学状态的评估应用于NASA的需求,用于开发用于使用船舶航天器的微生物监测器,以及一系列建议,即在船上的循环水的基于PCR的微生物监测器设计ISS。讨论了对IS发动机上的再生水的基于PCR的微生物监测器相关的问题包括:(1)定量PCR的仪器化和化学,(2)PCR不能区分可行性和不可活性的微生物,( 3)可能的PCR抑制剂在ISS水中,(4)预磷酸预样品浓度和制备方法,(5)需要监测哪些微生物,(6)DNA探测的发育是基于PCR的显示器需要识别潜在危险的微生物污染物。

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