离开地球后人类免疫系统面临的挑战。

IF 4.4 1区 物理与天体物理 Q1 MULTIDISCIPLINARY SCIENCES npj Microgravity Pub Date : 2024-11-18 DOI:10.1038/s41526-024-00446-9
Shannon Marchal, Alexander Choukér, Jürgen Bereiter-Hahn, Armin Kraus, Daniela Grimm, Marcus Krüger
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引用次数: 0

摘要

从地球生命诞生之初,为了保证细胞的完整性、平衡和宿主的生存,已经进化出了多种免疫防御机制。所有这些复杂的平衡机制都是在数亿年的时间里根据环境需要而形成的。人类太空飞行涉及各种危害健康的因素,如较高水平的辐射、重力改变、隔离和禁闭、生活在狭小的空间以及与远离家园有关的压力。越来越多的证据表明,宇航员的免疫学发生了变化,包括促炎反应增强、潜伏病毒重新激活和细胞介导的改变,这反映了宇航员体内的失衡状态。同时,微生物的致病性、毒性和耐药性增强,不利于在太空中长期停留。我们从过去的经验中看到,人类免疫系统在进化过程中形成并保持了适应太空暴露体的潜力。但这不大可能在目前太空探索任务的短时间内实现。相反,在人类能够安全地进化到太空环境之前,需要首先解决宇航员健康面临的主要风险。
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Challenges for the human immune system after leaving Earth.

From the start of life on Earth, several immune defense mechanisms have evolved to guarantee cellular integrity, homeostasis, and host survival. All these sophisticated balances as shaped by and towards the environmental needs have occurred over hundreds of millions of years. Human spaceflight involves various health hazards, such as higher levels of radiation, altered gravity, isolation and confinement, living in tight quarters, and stress associated with being away from home. A growing body of evidence points towards immunological changes in astronauts, including heightened pro-inflammatory responses, reactivation of latent viruses, and cell-mediated alterations, reflecting a dysbalanced state in astronauts. Simultaneously, enhanced pathogenicity, virulence, and drug resistance properties of microorganisms tip the scale out of favor for prolonged stay in space. As we have learned from the past, we see potential for the human immune system, forged and maintained throughout evolutionary history, to adapt to the space exposome. It is unlikely that this will happen in the short time frames set for current space exploration missions. Instead, major risks to astronaut health need to be addressed first, before humans can safely evolve into the space environment.

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来源期刊
npj Microgravity
npj Microgravity Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
7.30
自引率
7.80%
发文量
50
审稿时长
9 weeks
期刊介绍: A new open access, online-only, multidisciplinary research journal, npj Microgravity is dedicated to publishing the most important scientific advances in the life sciences, physical sciences, and engineering fields that are facilitated by spaceflight and analogue platforms.
期刊最新文献
Stressors affect human motor timing during spaceflight. Development and characterization of a low intensity vibrational system for microgravity studies. Challenges for the human immune system after leaving Earth. Retinal blood vessel diameter changes with 60-day head-down bedrest are unaffected by antioxidant nutritional cocktail. Articular cartilage loss is an unmitigated risk of human spaceflight.
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