Signal transduction in cells of the immune system in microgravity.

Cell Commun Signal

Institute of Anatomy, Faculty of Medicine, University of Zurich, Switzerland.

Published: October 2008

AI Article Synopsis

  • Gravity has been a crucial factor in the evolution and functioning of all life forms on Earth, influencing everything from simple organisms to humans.
  • Research shows that immune cell function is significantly diminished in microgravity conditions, making these cells key for studying how gravity affects cellular processes.
  • Understanding how gravity impacts cellular functions will help address medical challenges for long-term space missions and enhance knowledge about life's development on Earth.

Article Abstract

Life on Earth developed in the presence and under the constant influence of gravity. Gravity has been present during the entire evolution, from the first organic molecule to mammals and humans. Modern research revealed clearly that gravity is important, probably indispensable for the function of living systems, from unicellular organisms to men. Thus, gravity research is no more or less a fundamental question about the conditions of life on Earth. Since the first space missions and supported thereafter by a multitude of space and ground-based experiments, it is well known that immune cell function is severely suppressed in microgravity, which renders the cells of the immune system an ideal model organism to investigate the influence of gravity on the cellular and molecular level. Here we review the current knowledge about the question, if and how cellular signal transduction depends on the existence of gravity, with special focus on cells of the immune system. Since immune cell function is fundamental to keep the organism under imnological surveillance during the defence against pathogens, to investigate the effects and possible molecular mechanisms of altered gravity is indispensable for long-term space flights to Earth Moon or Mars. Thus, understanding the impact of gravity on cellular functions on Earth will provide not only important informations about the development of life on Earth, but also for therapeutic and preventive strategies to cope successfully with medical problems during space exploration.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC2583999PMC
http://dx.doi.org/10.1186/1478-811X-6-9DOI Listing

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