Affiliation:
1. BioServe Space Technologies, University of Colorado Boulder
2. University of Colorado Boulder
3. Massachusetts Institute of Technology
4. NASA Ames Research Center
Abstract
Abstract
The undesirable, yet inevitable, presence of bacterial biofilms in spacecraft poses a risk to the proper functioning of systems and to astronauts’ health. To mitigate the risks that arise from them, it is important to understand biofilms’ behavior in microgravity. As part of the Space Biofilms project, biofilms of Pseudomonas aeruginosa were grown in spaceflight over material surfaces. Stainless Steel 316 (SS316) and passivated SS316 were tested for their relevance as spaceflight hardware components, while a lubricant impregnated surface (LIS) was tested as potential biofilm control strategy. The morphology and gene expression of biofilms were characterized. Biofilms in microgravity were less robust than on Earth. LIS strongly inhibited biofilm formation compared to SS. Furthermore, this effect was even greater in spaceflight than on Earth, making LIS a promising option for spacecraft use. Transcriptomic profiles for the different conditions are presented, and potential mechanisms of biofilm reduction on LIS are discussed.
Publisher
Research Square Platform LLC
Cited by
2 articles.
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