Department of Human Factors and Behavioral Neurobiology, Embry-Riddle Aeronautical University, Daytona Beach, FL.
NASA Ames Research Center, Space Biosciences Division, Moffett Field, CA.
Immunohorizons. 2023 Oct 1;7(10):670-682. doi: 10.4049/immunohorizons.2200063.
As we explore other planetary bodies, astronauts will face unique environmental and physiological challenges. The human immune system has evolved under Earth's gravitational force. Consequently, in the microgravity environment of space, immune function is altered. This can pose problematic consequences for astronauts on deep space missions where medical intervention will be limited. Studying the unique environment of microgravity has its challenges, yet current research has uncovered immunological states that are probable during exploration missions. As microgravity-induced immune states are uncovered, novel countermeasure developments and personalized mitigation programs can be designed to improve astronaut health. This can also benefit immune-related monitoring programs for disorders on Earth. This is a comprehensive review, including gaps in knowledge, of simulated and spaceflight microgravity studies in human and rodent models.
当我们探索其他行星体时,宇航员将面临独特的环境和生理挑战。人类的免疫系统是在地球的重力下进化的。因此,在太空的微重力环境中,免疫功能会发生改变。这可能会对执行深空任务的宇航员造成问题,因为在这些任务中,医疗干预将受到限制。研究微重力的独特环境具有一定的挑战性,但目前的研究已经揭示了在探索任务中可能出现的免疫学状态。随着微重力引起的免疫状态的揭示,可以设计新的对策开发和个性化缓解计划,以改善宇航员的健康。这也有助于地球上与免疫相关的疾病监测计划。这是一篇全面的综述,包括人类和啮齿动物模型中模拟和空间飞行微重力研究的知识空白。
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