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LOCAD-PTS: Operation of a new system for microbial monitoring aboard the International Space Station (ISS)

机译:LOCAD-PTS:在国际空间站的微生物监测系统的操作(ISS)

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Microorganisms within the space stations Salyut, Mir and the International Space Station ( ISS), have traditionally been monitored with culture-based techniques. These techniques involve growing environmental samples (cabin water, air or surfaces) on agar-type media for several days, followed by visualization of resulting colonies; and return of samples to Earth for ground-based analysis. This approach has provided a wealth of useful data and enhanced our understanding of the microbial ecology within space stations. However, the approach is also limited by the following: i) More than 95% microorganisms in the environment cannot grow on conventional growth media; ii) Significant time lags occur between onboard sampling and colony visualization (3-5 days) and ground-based analysis (as long as several months); iii) Colonies are often difficult to visualize due to condensation within contact slide media plates; and iv) Techniques involve growth of potentially harmful microorganisms, which must then be disposed of safely. This report describes the operation of a new culture-independent technique onboard the ISS for rapid analysis (within minutes) of endotoxin and β-1, 3-glucan, found in the cell walls of gram-negative bacteria and fungi, respectively. This technique involves analysis of environmental samples with the Limulus Amebocyte Lysate (LAL) assay in a handheld device. This handheld device and sampling system is known as the Lab-On-a-Chip Application Development Portable Test System ( LOCAD-PTS). A poster will be presented that describes a comparative study between LOCAD-PTS analysis and existing culture-based methods onboard the ISS; together with an exploratory survey of surface endotoxin throughout the ISS. It is concluded that while a general correlation between LOCAD-PTS and traditional culture-based methods should not necessarily be expected, a combinatorial approach can be adopted where both sets of data are used together to generate a more complete story of the microbial ecology on the ISS.
机译:传统上,Salyut,MIR和国际空间站(ISS)内的空间站内的微生物传统上被基于文化的技术监测。这些技术涉及在琼脂型培养基上生长环境样品(机舱水,空气或表面)几天,然后是所得菌落的可视化;并将样品返回到地球上进行地面分析。这种方法提供了丰富的有用数据,并提高了我们对太空站内微生物生态的理解。然而,该方法也受以下内容:i)在常规增长介质中,环境中的多种微生物不超过95%的微生物; ii)在板载采样和菌落可视化(3-5天)和基于地面的分析(只要几个月)之间发生显着的时间滞后; III)由于接触式滑动介质板内的冷凝而难以可视化菌落;和IV)技术涉及潜在有害的微生物的生长,然后必须安全地处理。本报告描述了在内毒素和β-1,3-葡聚糖的快速分析(分钟内)的新型文化无关技术的运作分别在革兰氏阴性细菌和真菌的细胞壁中发现。该技术涉及在手持装置中使用氧琥珀细胞裂解物(LAL)测定的环境样品分析。该手持设备和采样系统称为实验室应用程序开发便携式测试系统(Locad-PTS)。将提出一张海报,其中描述了洛克斯 - PTS分析与现有培养的方法之间的比较研究。与整个ISS中的表面内毒素的探索性调查一起。结论是,虽然不一定应该预期LOCAD-PT和基于传统文化的方法的一般相关性,但是可以采用组合方法,其中两组数据一起使用,以产生更完整的微生物生态学故事ISS。

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