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Terrestrial stress analogs for spaceflight associated immune system dysregulation

机译:空云相关免疫系统的陆地应力模拟失效

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Recent data indicates that dysregulation of the immune system occurs and persists during spaceflight. Impairment of immunity, especially in conjunction with elevated radiation exposure and limited clinical care, may increase certain health risks during exploration-class deep space missions (i.e. to an asteroid or Mars). Research must thoroughly characterize immune dysregulation in astronauts to enable development of a monitoring strategy and validate any necessary countermeasures. Although the International Space Station affords an excellent platform for on-orbit research, access may be constrained by technical, logistical vehicle or funding limitations. Therefore, terrestrial spaceflight analogs will continue to serve as lower cost, easier access platforms to enable basic human physiology studies. Analog work can triage potential in-flight experiments and thus result in more focused on-orbit studies, enhancing overall research efficiency. Terrestrial space analogs generally replicate some of the physiological or psychological stress responses associated with spaceflight. These include the use of human test subjects in a laboratory setting (i.e. exercise, bed rest, confinement, circadian misalignment) and human remote deployment analogs (Antarctica winterover, undersea, etc.) that incorporate confinement, isolation, extreme environment, physiological mission stress and disrupted circadian rhythms. While bed rest has been used to examine the effects of physical deconditioning, radiation and microgravity may only be simulated in animal or microgravity cell culture (clinorotation) analogs. This article will characterize the array of terrestrial analogs for spaceflight immune dysregulation, the current evidence base for each, and interpret the analog catalog in the context of acute and chronic stress.
机译:最近的数据表明,在空间发生并持续存在免疫系统的失调。免疫力的损害,特别是与辐射暴露和有限的临床护理结合,可能会在勘探课堂深度空间任务期间增加某些健康风险(即小行星或火星)。研究必须在宇航员中彻底表征免疫失调,以实现监测策略并验证任何必要的对策。虽然国际空间站为单轨研究提供了优秀的平台,但可以通过技术,后勤车辆或资金限制来限制。因此,地面空间模拟将继续作为更低的成本,更轻松地访问平台,以实现基本的人类生理学研究。模拟工作可以进行潜在的飞行中实验,从而导致更集中的轨道研究,提高整体研究效率。地面空间类似物通常复制与空间相关的一些生理或心理压力响应。这些包括在实验室环境中使用人体测试对象(即运动,卧床休息,限制,昼夜评估)和人类远程部署类似物(南极洲Winterover,Undersea等),该组成包括监禁,隔离,极端环境,生理任务压力并扰乱了昼夜节律。虽然卧床休息已经用于检查物理解剖,辐射和微肠蠕动的影响,但只能在动物或微匍匐细胞培养(临床)类似物中模拟。本文将表征用于空间免疫失调的陆地类似物阵列,每个阵列,每种证据基础,并在急性和慢性应激的背景下解释模拟目录。

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