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Microgravity-Induced Immune Plasticity and Temporal Modulation of Gene Networks and T Cell Subsets During the MESSAGE Science Mission in Axiom-3 on the ISS

2025-12-16

Abstract excerpt

<title>Abstract</title> <p>Microgravity presents significant challenges to human physiology, particularly the immune system, during spaceflight. T lymphocytes, central regulators of adaptive immunity, are known to be sensitive to gravitational changes; however, the molecular mechanisms underlying immune modulation in space remain incompletely understood. This study, conducted as part of the MESSAGE (Microgravity...

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Literature Corpus work
21290e74-9150-577a-961d-6d1c59f45579
DOI
10.21203/rs.3.rs-7535063/v1
Open publication

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Microgravity-Induced Immune Plasticity and Temporal Modulation of Gene Networks and T Cell Subsets During the MESSAGE Science Mission in Axiom-3 on the ISSDOI 10.21203/rs.3.rs-7535063/v1
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