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Developing Autonomous Technologies for Biological Missions to Deep SpaceIn upcoming biological missions beyond low Earth orbit (LEO), the use of autonomous instrumentation will allow scientists to perform a variety of experiments, including the characterization of the response to different space environments (Moon, Mars, interplanetary space) using biological models like microbes, plants, organoids, and tissue chips.
 
BioSentinel is an ongoing deep space mission, currently at over 50 million kilometers from Earth and the first instrument developed to perform biological experiments beyond LEO. Even though the primary objective of this CubeSat mission was to investigate the effects of the deep space radiation environment on budding yeast, the spacecraft bus (i.e., all the subsystems that support the biological payload like power, thermal, data telemetry, navigation, etc.) can accommodate a variety of biological (and physical) experiments and model organisms. LEIA, an upcoming CLPS mission to the lunar surface, uses a microfluidic and optical instrument based on BioSentinel to study the effects of the lunar environment on different cellular processes and on bioproduction of antioxidants.
 
A new series of science mission concepts are being proposed to be accommodated into platforms like BioSentinel. These missions will investigate the response of a variety of organisms to the deep space environment, including but not limited to single-cell eukaryotes, cyanobacteria, plants (including crops), organoids, and tissue chips. In addition to optical absorbance measurements like the ones performed in BioSentinel (and LEIA), we are investigating the use of fluorescence detection, microscopy, sequencing devices, etc. Thus, instruments like the ones proposed here can be adapted to a variety of platforms like free-flyers, deployable payloads, landers, rovers, and the lunar Gateway.
 
These technologies can be used as steppingstones for establishing a sustained human presence on the Moon and in deep space while providing knowledge for the development of potential countermeasures.
Document ID
20240014050
Acquisition Source
Ames Research Center
Document Type
Presentation
Authors
Sergio R Santa Maria
(Ames Research Center Mountain View, United States)
Date Acquired
November 6, 2024
Subject Category
Space Radiation
Spacecraft Design, Testing and Performance
Man/System Technology and Life Support
Meeting Information
Meeting: American Society for Gravitational and Space Research Annual Conference (ASGSR 2024)
Location: San Juan, PR
Country: US
Start Date: December 3, 2024
End Date: December 7, 2024
Sponsors: American Society of Gravitational & Space Research
Funding Number(s)
WBS: 207022.05.02.01.04.01.01
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
Technical Review
Single Expert
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