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Federal
Effect of varying amounts of simulated lunar soil batch #005 upon growth of lettuce explants
National Aeronautics and Space Administration —
The following general conclusions can be made concerning the use of tissue culture for assaying the effects of mineral elements from simulated lunar soil or other... -
Federal
Microbiome profiling of feces from mice flown on the RR-10 mission
National Aeronautics and Space Administration —
The objective of the Rodent Research-10 Mission (RR-10) was to investigate how spaceflight affects the cellular and molecular mechanisms of normal bone tissue... -
Federal
Effects of microgravity on human iPSC-derived neural organoids on the International Space Station - cortical organoids
National Aeronautics and Space Administration —
Research conducted on the International Space Station (ISS) in low-Earth orbit (LEO) has shown the effects of microgravity on multiple organs. To investigate the... -
Federal
Transcriptional profiling of thymus from mice flown on the RR-9 mission
National Aeronautics and Space Administration —
The objective of the Rodent Research-9 (RR-9) mission was to use mice to understand the molecular basis of phenomena that affect astronauts during long-duration... -
Federal
Fifteen days of microgravity causes growth in calvaria of mice (STS-131)
National Aeronautics and Space Administration —
Bone growth may occur in spaceflight as a response to skeletal unloading and head-ward fluid shifts. While unloading causes significant loss of bone mass and density... -
Federal
Characterizing Epigenetic Changes in Methylation Mutants (elp2-5 and met1-7) in Response to Spaceflight. [RNA-Seq]
National Aeronautics and Space Administration —
Epigenetic changes in the DNA methylome are increasingly shown to play an integral role in regulating gene expression necessary for plants adaption to environmental... -
Federal
Human skeletal muscle tissue chip autonomous payload reveals changes in fiber type and metabolic gene expression due to spaceflight.
National Aeronautics and Space Administration —
Microphysiological systems provide the opportunity to model accelerated changes at the human tissue level in the extreme space environment. Spaceflight-induced muscle... -
Federal
Alternative splicing regulates the physiological adaptation of the mouse hind limb postural and phasic muscles to microgravity
National Aeronautics and Space Administration —
We sought to comprehensively elucidate the transcriptomic underpinnings of microgravity-induced muscle phenotypes in mice by evaluating both differential gene... -
Federal
Transcriptional profiling of thymus from mice flown on the RR-23 mission
National Aeronautics and Space Administration —
The objective of the Rodent Research-23 missions (RR-23) was to better understand the effects of spaceflight on the eyes, specifically on the structure and function... -
Federal
Spatial characterization of microbial communities on multi-species leafy greens grown simultaneously in the Veggie vegetable production systems on the International Space Station VEG-03D
National Aeronautics and Space Administration —
Investigates the microbial communities of plants and Veggie pillow components with culturable and non-culturable methods providing qualitative and quantitative data.... -
Federal
Correlated Gene and Protein Expression in heads from Drosophila reared in microgravity
National Aeronautics and Space Administration —
Omics analyses of RNA and protein isolated from heads of microgravity reared adult Drosophila. -
Federal
Transcriptional analysis of dorsal skin from mice flown on the RR-5 mission
National Aeronautics and Space Administration —
The objective of the Rodent Research-5 (RR-5) study was to evaluate bone loss in mice during spaceflight and to determine if treatment with a modified version of NEL-... -
Federal
Transcriptional profiling of heart tissue from mice flown on the RRRM-2 mission
National Aeronautics and Space Administration —
In the Rodent Research Reference Mission (RRRM-2), forty female C57BL/6NTac mice were flown on the International Space Station. To assess differences in outcomes due... -
Federal
Proteomics and Transcriptomics analysis of Arabidopsis Seedlings in Microgravity
National Aeronautics and Space Administration —
On Earth plants are constantly exposed to a gravitational field of 1G. Gravity affects a plant in every step of its development. Germinating seedlings orient their... -
Federal
Metagenome profiling of feces from mice flown on the RRRM-1 mission
National Aeronautics and Space Administration —
In Rodent Research Reference Mission-1 (RRRM-1), forty female BALB/cAnNTac mice were flown on the International Space Station. To assess differences in outcomes due... -
Federal
Transcriptional analysis of dorsal skin from mice flown on the RR-6 mission
National Aeronautics and Space Administration —
The objective of the Rodent Research-6 (RR-6) study was to evaluate muscle atrophy in mice during spaceflight and to test the efficacy of a novel therapeutic to... -
Federal
Rodent Research-1 (RR1) NASA Validation Flight: Mouse tibialis anterior muscle transcriptomic, proteomic, and epigenomic data
National Aeronautics and Space Administration —
NASA's Rodent Research (RR) project is playing a critical role in advancing biomedical research on the physiological effects of space environments. Due to the limited... -
Federal
Microbiological and nutritional analysis of lettuce crops grown on the International Space Station-VEG03A
National Aeronautics and Space Administration —
The ability to grow safe, fresh food to supplement packaged foods of astronauts in space has been an important goal for NASA. Food crops grown in space experience... -
Federal
Densely Ionizing Radiation Effects on the Microenvironment Promote Aggressive Trp53 Null Mammary Carcinomas
National Aeronautics and Space Administration —
Densely ionizing radiation is a major component of the space radiation environment and has potentially greater carcinogenic effect compared to sparsely ionizing... -
Federal
Gene expression profiling for spaceflight induced-neuroinflammation in the mouse brain
National Aeronautics and Space Administration —
The health risk from spaceflight-induced neuronal damage and potential adverse neurovascular effects is a chief concern. More recently, it has been proposed that...