免疫系统
重编程
先天免疫系统
免疫学
太空飞行
细胞因子
获得性免疫系统
免疫
免疫功能障碍
炎症
医学
生物
疾病
免疫疗法
人体研究
细胞
神经科学
作者
Asmaa Anwar Ismail,Adel B. Elmoselhi,Lina Abu Nada,Betul Rahman,Zahi Badran,Élise Verron
标识
DOI:10.1016/j.drudis.2025.104503
摘要
Spaceflight exposes the human body to microgravity, isolation, and radiation, which collectively disrupt physiological homeostasis, particularly affecting the immune system. Microgravity significantly impairs both innate and adaptive immune responses by altering immune cell formation, activation, trafficking, and cytokine production. These disturbances manifest as an overall shift toward an immunosuppressive phenotype, increased oxidative stress, and transcriptional reprogramming of immune cells. Pharmacological agents, including natural antioxidants, flavonoids, and bioactive polysaccharides, have demonstrated anti-inflammatory and immune-restorative effects in microgravity models. In this review, we highlight the molecular mechanisms of immune dysfunction in microgravity and explore current potential therapeutic approaches to ensure safe long-duration space missions.
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