Abstract
The spaceflight environment, including microgravity and radiation, may have considerable effects on the health and performance of astronauts, especially for long-duration and Martian missions. Conventional on-ground and in-space experimental approaches have been employed to investigate the comprehensive biological effects of the spaceflight environment. As a class of recently emerging bioengineered in vitro models, tissue chips are characterized by a small footprint, potential automation, and the recapitulation of tissue-level physiology, thus promising to help provide molecular and cellular insights into space medicine. Here, we briefly review the technical advantages of tissue chips and discuss specific on-chip physiological recapitulations. Several tissue chips have been launched into space, and more are poised to come through multi-agency collaborations, implying an increasingly important role of tissue chips in space medicine.
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CITATION STYLE
Mu, X., He, W., Rivera, V. A. M., De Alba, R. A. D., Newman, D. J., & Zhang, Y. S. (2022). Small tissue chips with big opportunities for space medicine. Life Sciences in Space Research, 35, 150–157. https://doi.org/10.1016/j.lssr.2022.09.002
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