New! Sign up for our free email newsletter.
Science News
from research organizations

Mice display altered immune system following spaceflight

Date:
December 6, 2018
Source:
Federation of American Societies for Experimental Biology
Summary:
Based on examinations of mice that had been on board the Bion-M1 biosatellite, new research demonstrates that the outer space environment impairs the production of B lymphocytes, the white blood cells responsible for antibody production. The study also shows that such adverse effects persist at least one week after returning to Earth.
Share:
FULL STORY

New research published in The FASEB Journal brings to light new information regarding the increased susceptibility of mice to infection during spaceflight. Based on examinations of mice that had been on board the Bion-M1 biosatellite, the study demonstrates that the outer space environment impairs the production of B lymphocytes, the white blood cells responsible for antibody production. The study also shows that such adverse effects persist at least one week after returning to Earth.

To conduct the study, researchers compared three groups of mice. The first two groups were launched into space via the Bion-M1 biosatellite, which orbits Earth at an altitude of 575 km, or 357 miles (similar to that of the Hubble Space Telescope). The two groups were exposed to weightlessness during the 30-day spaceflight.

Upon returning to Earth, the first group was analyzed on landing day, whereas the second group was analyzed a week later. The third group was kept on Earth, but under housing and feeding conditions similar to those in space. Analysis of the subjects' femur proteins revealed that the changes elicited by weightlessness altered the immune system of flown versus control mice. These alterations were not restored after the post-flight week of recovery on Earth.

"We hope these findings will encourage exploration of countermeasures to improve astronauts' health and increase the safety of spaceflight," stated Fabrice Bertile, a researcher at the Hubert Curien Multidisciplinary Institute's Analytical Sciences Department in Strasbourg, France. "Such concerns are of major importance at a time when space agencies are envisioning manned missions to the moon, asteroids, and even Mars in the near future."

In addition to long-term space missions, further research also may have implications for people who are sedentary or immobilized, as they experience adverse immune effects very similar to weightlessness.

"This is an intriguing initial finding, worthy of pursuit," said Thoru Pederson, PhD, Editor-in-Chief of The FASEB Journal.


Story Source:

Materials provided by Federation of American Societies for Experimental Biology. Note: Content may be edited for style and length.


Journal Reference:

  1. Georg Tascher, Maude Gerbaix, Pauline Maes, Blandine Chazarin, Stéphanie Ghislin, Evgenia Antropova, Galina Vassilieva, Nassima Ouzren-Zarhloul, Guillemette Gauquelin-Koch, Laurence Vico, Jean-Pol Frippiat, Fabrice Bertile. Analysis of femurs from mice embarked on board BION-M1 biosatellite reveals a decrease in immune cell development, including B cells, after 1 wk of recovery on Earth. The FASEB Journal, 2018; fj.201801463R DOI: 10.1096/fj.201801463R

Cite This Page:

Federation of American Societies for Experimental Biology. "Mice display altered immune system following spaceflight." ScienceDaily. ScienceDaily, 6 December 2018. <www.sciencedaily.com/releases/2018/12/181206141115.htm>.
Federation of American Societies for Experimental Biology. (2018, December 6). Mice display altered immune system following spaceflight. ScienceDaily. Retrieved April 17, 2024 from www.sciencedaily.com/releases/2018/12/181206141115.htm
Federation of American Societies for Experimental Biology. "Mice display altered immune system following spaceflight." ScienceDaily. www.sciencedaily.com/releases/2018/12/181206141115.htm (accessed April 17, 2024).

Explore More

from ScienceDaily

RELATED STORIES