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Space flight and central nervous system: Friends or enemies? Challenges and opportunities for neuroscience and neuro‐oncology

太空飞行 神经科学 失重 神经可塑性 心理学 生物 认知科学 工程类 物理 天文 航空航天工程
作者
Giovanni Marfia,Stefania Elena Navone,Laura Guarnaccia,Rolando Campanella,Marco Locatelli,Monica Miozzo,Pietro Perelli,Giulio Della Morte,Leonardo Catamo,Pietro Tondo,Carmelo Campanella,Marco Lucertini,Giuseppe Ciniglio Appiani,Angelo Landolfi,Emanuele Garzia
出处
期刊:Journal of Neuroscience Research [Wiley]
卷期号:100 (9): 1649-1663 被引量:14
标识
DOI:10.1002/jnr.25066
摘要

Abstract Space environment provides many challenges to pilots, astronauts, and space scientists, which are constantly subjected to unique conditions, including microgravity, radiations, hypoxic condition, absence of the day and night cycle, etc. These stressful stimuli have the potential to affect many human physiological systems, triggering physical and biological adaptive changes to re‐establish the homeostatic state. A particular concern regards the risks for the effects of spaceflight on the central nervous system (CNS), as several lines of evidence reported a great impact on neuroplasticity, cognitive functions, neurovestibular system, short‐term memory, cephalic fluid shift, reduction in motor function, and psychological disturbances, especially during long‐term missions. Aside these potential detrimental effects, the other side of the coin reflects the potential benefit of applicating space‐related conditions on Earth‐based life sciences, as cancer research. Here, we focused on examining the effect of real and simulated microgravity on CNS functions, both in humans and in cellular models, browsing the different techniques to experience or mime microgravity on‐ground. Increasing evidence demonstrate that cancer cells, and brain cancer cells in particular, are negatively affected by microgravity, in terms of alteration in cell morphology, proliferation, invasion, migration, and apoptosis, representing an advancing novel side of space‐based investigations. Overall, deeper understandings about the mechanisms by which space environment influences CNS and tumor biology may be promisingly translated into many clinical fields, ranging from aerospace medicine to neuroscience and oncology, representing an enormous pool of knowledge for the implementation of countermeasures and therapeutic applications.
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