Microbes in orbit: Understanding spaceflight’s impact on gut health

October 21, 2024

Scientists have uncovered how space travel profoundly alters the gut microbiome, yielding insights that could shape future space missions. This marks a breakthrough in understanding how space missions could affect astronauts' health on long trips, the researchers said. The scholars said their findings could help ensure the success of future space missions, from establishing a long-term presence on the Moon to sending humans to Mars. "These discoveries emphasize the vital connection between gut bacteria and overall health, especially in how our bodies handle energy and metabolism. DOI: 10.1038/s41522-024-00545-1About McGill UniversityFounded in 1821, McGill University is home to exceptional students, faculty, and staff from across Canada and around the world.

Scientists have uncovered how space travel profoundly alters the gut microbiome, yielding insights that could shape future space missions. 

The groundbreaking study, led by a McGill University researcher in collaboration with University College Dublin (UCD), NASA’s GeneLab and an international consortium, offers the most detailed profile to date of how space travel affects gut microbes. 

Published in npj Biofilms and Microbiomes , the study used advanced genetic technologies to examine changes in the gut microbiome, colons and livers of mice aboard the International Space Station (ISS) over three months.  

The findings reveal significant shifts in certain gut bacteria that correspond to changes in the mice's liver and intestinal genes, suggesting that spaceflight might suppress the immune system and alter metabolism. This marks a breakthrough in understanding how space missions could affect astronauts' health on long trips, the researchers said. 

“Spaceflight extensively alters astronauts' bodies, yet we still don't fully understand why. By using advanced techniques to study both gut bacteria and genes at the same time, we're beginning to see patterns that could explain those changes and help us develop safeguards for future missions,” said lead author Emmanuel Gonzalez, who leads microbiome bioinformatics at the McGill Centre for Microbiome Research and the Canadian Centre for Computational Genomics.

The study is part of the Nature Portfolio package, The Second Space Age: Omics, Platforms, and Medicine across Space Orbits, marking the largest coordinated release of space biology discoveries in history.

The scholars said their findings could help ensure the success of future space missions, from establishing a long-term presence on the Moon to sending humans to Mars.  

Implications for health on Earth 

The findings also are relevant to the health of those who never leave our planet, said senior author and UCD Professor Nicholas Brereton. 

"These discoveries emphasize the vital connection between gut bacteria and overall health, especially in how our bodies handle energy and metabolism. Understanding how spaceflight affects this delicate balance is crucial not only for astronaut health, but also for medical advancements here on Earth,” he said. 

The research was generated by the NASA GeneLab Analysis Working Group for Microbes. Genelab is funded by the Space Biology Program (Science Mission Directorate, Biological and Physical Sciences Division) of the National Aeronautics and Space Administration.  

About the study 

Spaceflight alters host-gut microbiota interactions” by Gonzalez, E et al was published in npj Biofilms and Microbiomes in August 2024.  

DOI: 10.1038/s41522-024-00545-1 

About McGill University

Founded in 1821, McGill University is home to exceptional students, faculty, and staff from across Canada and around the world. It is consistently ranked as one of the top universities, both nationally and internationally. It is a world-renowned institution of higher learning with research activities spanning three campuses, 12 faculties, 14 professional schools, 300 programs of study and over 39,000 students, including more than 10,400 graduate students.

McGill’s commitment to sustainability reaches back several decades and spans scales from local to global. The sustainability declarations that we have signed affirm our role in helping to shape a future where people and the planet can flourish.

The source of this news is from Mc Gill University

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