Water and microbial monitoring technologies towards the near future space exploration

被引:15
作者
Amalfitano, Stefano [1 ]
Levantesi, Caterina [1 ]
Copetti, Diego [2 ]
Stefani, Fabrizio [2 ]
Locantore, Ilaria [3 ]
Guarnieri, Vincenzo [3 ]
Lobascio, Cesare [3 ]
Bersani, Francesca [4 ]
Giacosa, Donatella [4 ]
Detsis, Emmanouil [5 ]
Rossetti, Simona [1 ]
机构
[1] Natl Res Council Italy IRSA CNR, Water Res Inst, Via Salaria Km 29,300, Rome 00015, Italy
[2] Natl Res Council Italy IRSA CNR, Water Res Inst, Via Mulino 19, Monza 20861, Italy
[3] Thales Alenia Space Italia SpA, Str Ant Collegno 253, Turin 10146, Italy
[4] Soc Metropolitana Acque Torino SpA, Ctr Ric SMAT, Cso Unita Italia 235-3, Turin 10127, Italy
[5] European Sci Fdn, 1 Quai Lezay Marnesia,BP 90015, Strasbourg 67080, France
基金
欧盟地平线“2020”;
关键词
International space station; Space missions; Biomonitoring; Water biological contamination; DRINKING-WATER; FLOW-CYTOMETRY; MICROBIOLOGICAL CHANGES; DIRECT AMPLIFICATION; QUALITY; STATION; CONTAMINATION; BACTERIAL; SYSTEMS; GROWTH;
D O I
10.1016/j.watres.2020.115787
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Space exploration is demanding longer lasting human missions and water resupply from Earth will become increasingly unrealistic. In a near future, the spacecraft water monitoring systems will require technological advances to promptly identify and counteract contingent events of waterborne microbial contamination, posing health risks to astronauts with lowered immune responsiveness. The search for bio-analytical approaches, alternative to those applied on Earth by cultivation-dependent methods, is pushed by the compelling need to limit waste disposal and avoid microbial regrowth from analytical carryovers. Prospective technologies will be selected only if first validated in a flight-like environment, by following basic principles, advantages, and limitations beyond their current applications on Earth. Starting from the water monitoring activities applied on the International Space Station, we provide a critical overview of the nucleic acid amplification-based approaches (i.e., loop-mediated isothermal amplification, quantitative PCR, and high-throughput sequencing) and early-warning methods for total microbial load assessments (i.e., ATP-metry, flow cytometry), already used at a high readiness level aboard crewed space vehicles. Our findings suggest that the forthcoming space applications of mature technologies will be necessarily bounded by a compromise between analytical performances (e.g., speed to results, identification depth, reproducibility, multiparametricity) and detrimental technical requirements (e.g., reagent usage, waste production, operator skills, crew time). As space exploration progresses toward extended missions to Moon and Mars, miniaturized systems that also minimize crew involvement in their end-to-end operation are likely applicable on the long-term and suitable for the in-flight water and microbiological research. (C) 2020 Elsevier Ltd. All rights reserved.
引用
收藏
页数:16
相关论文
共 191 条
[1]   ATP measurement in seawater reverse osmosis systems: Eliminating seawater matrix effects using a filtration-based method [J].
Abushaban, Almotasembellah ;
Salinas-Rodriguez, Sergio G. ;
Mangal, Muhammad Nasir ;
Mondal, Subhanjan ;
Goueli, Said A. ;
Knezev, Aleksandra ;
Vrouwenvelder, Johannes S. ;
Schippers, Jan C. ;
Kennedy, Maria D. .
DESALINATION, 2019, 453 :1-9
[2]   Back to Basics - The Influence of DNA Extraction and Primer Choice on Phylogenetic Analysis of Activated Sludge Communities [J].
Albertsen, Mads ;
Karst, Soren M. ;
Ziegler, Anja S. ;
Kirkegaard, Rasmus H. ;
Nielsen, Per H. .
PLOS ONE, 2015, 10 (07)
[3]  
Allen C. S., 2017, Space Safety and Human Performance, P87, DOI DOI 10.1016/B978-0-08-101869-9.00004-2
[4]   Groundwater geochemistry and microbial community structure in the aquifer transition from volcanic to alluvial areas [J].
Amalfitano, S. ;
Del Bon, A. ;
Zoppini, A. ;
Ghergo, S. ;
Fazi, S. ;
Parrone, D. ;
Casella, P. ;
Stano, F. ;
Preziosi, E. .
WATER RESEARCH, 2014, 65 :384-394
[5]   Water Quality and Total Microbial Load: A Double-Threshold Identification Procedure Intended for Space Application [J].
Amalfitano, Stefano ;
Levantesi, Caterina ;
Garrelly, Laurent ;
Giacosa, Donatella ;
Bersani, Francesca ;
Rossetti, Simona .
FRONTIERS IN MICROBIOLOGY, 2018, 9
[6]   Deconvolution model to resolve cytometric microbial community patterns in flowing waters [J].
Amalfitano, Stefano ;
Fazi, Stefano ;
Ejarque, Elisabet ;
Freixa, Anna ;
Romani, Anna M. ;
Butturini, Andrea .
CYTOMETRY PART A, 2018, 93A (02) :194-200
[7]  
[Anonymous], PRACTICAL FLOW CYTOM
[8]   Analytical chemistry in water quality monitoring during manned space missions [J].
Artemyeva, Anastasia A. .
ACTA ASTRONAUTICA, 2016, 126 :11-17
[9]  
Augelli M., 2018, 15 INT C SPAC OP AM, DOI [10.2514/6.2018-2519., DOI 10.2514/6.2018-2519]
[10]   Conductive Magnetite Nanoparticles Accelerate the Microbial Reductive Dechlorination of Trichloroethene by Promoting Interspecies Electron Transfer Processes [J].
Aulenta, Federico ;
Rossetti, Simona ;
Amalfitano, Stefano ;
Majone, Mauro ;
Tandoi, Valter .
CHEMSUSCHEM, 2013, 6 (03) :433-436