Detection of Microorganisms Onboard the International Space Station Using an Electronic Nose

U. Reidt, A. Helwig, G. Müller, L. Plobner, Veronika Lugmayr, S. Kharin, Yu.I. Smirnov, N. Novikova, J. Lenic, V. Fetter, T. Hummel
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引用次数: 12

Abstract

Abstract We report on the detection of microorganisms onboard the International Space Station (ISS) using an electronic nose we named the E-Nose. The E-Nose, containing an array of ten different metal oxide gas sensors, was trained on Earth to detect the four most abundant microorganisms that are known to exist onboard the ISS. To assess its performance in space, the E-Nose was brought to the ISS and three measurement campaigns were carried out in three different locations inside the ISS during a 5-month mission. At the end of this mission, all investigated locations were wiped with swabs, and the swabs and odor sensor signal data were sent back to Earth for an in-depth analysis in earthbound laboratories. The in-space measurements were compared with an odor database containing four organisms, but a consensus odor could not be identified. Microbiological results could not provide clues to the smell that was measured. The yeast Rhodotorula mucilaginosa was identified in the literature as the most probable candidate for the unknown odor. Further investigations showed that the smell of Rhodotorula mucilaginosa matches very well with the data obtained inside the ISS. Finally, Rhodotorula mucilaginosa DNA was identified in swabs taken from the sleeping cabin of the astronaut, which confirms the assumption that the yeast Rhodotorula mucilaginosa was actually measured in space by the E-Nose.
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利用电子鼻检测国际空间站上的微生物
摘要:我们报道了在国际空间站(ISS)上使用我们命名为E-Nose的电子鼻检测微生物的情况。电子鼻包含十组不同的金属氧化物气体传感器,在地球上进行训练,以检测已知存在于国际空间站上的四种最丰富的微生物。为了评估其在太空中的性能,电子鼻被带到国际空间站,在为期5个月的任务中,在国际空间站的三个不同地点进行了三次测量活动。在这次任务结束时,所有被调查的地点都用棉签擦拭,棉签和气味传感器信号数据被送回地球,供地球实验室进行深入分析。空间测量结果与包含四种生物的气味数据库进行了比较,但无法确定一致的气味。微生物学的结果不能为测量到的气味提供线索。在文献中,粘胶红酵母被确定为最可能的未知气味的候选者。进一步的调查表明,粘液红霉菌的气味与国际空间站内获得的数据非常吻合。最后,从宇航员的睡眠舱中提取的棉签中鉴定出了粘液红曲菌的DNA,这证实了“电子鼻”在太空中测量到粘液红曲菌酵母菌的假设。
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