@article{dca141c1616445efba4209b30a9a9104,
title = "Effects of spaceflight on innate immune function and antioxidant gene expression",
keywords = "Cytokines, Immunity, Microgravity, Stress, Myoglobin/genetics, Up-Regulation, Gene Expression, Oligonucleotide Array Sequence Analysis, Organ Size, Lipopolysaccharides/pharmacology, Space Flight, Spleen/drug effects, RNA, Messenger/metabolism, Liver/pathology, Oxidative Stress/genetics, Thymus Gland/pathology, Animals, Lymphocyte Activation/immunology, Immunity/physiology, Lymphocyte Count, Female, Leukocyte Count, Mice, Cytokines/metabolism",
author = "Baqai, \{Farnaz P.\} and Gridley, \{Daila S.\} and Slater, \{James M.\} and Xian Luo-Owen and Stodieck, \{Louis S.\} and Virginia Ferguson and Chapes, \{Stephen K.\} and Pecaut, \{Michael J.\}",
note = "since the first human flights to space, there has been a focus on the health effects of spaceflight-related environmental stressors such as isolation, nutrition, microgravity, radiation, and changes in the circadian rhythm ( 30, 63). Studies have shown that the spaceflight environment can impact several physiological systems, potentially resulting in serious consequences for immunity.",
year = "2009",
month = jun,
doi = "10.1152/japplphysiol.91361.2008",
language = "English",
volume = "106",
pages = "1935--1942",
journal = "Journal of Applied Physiology",
issn = "8750-7587",
number = "6",
}