Key Laboratory for Space Biosciences & Biotechnology, Institute of Special Environmental Biophysics, School of Life Sciences, Northwestern Polytechnical University, Xi'an 710072, China.
Int J Mol Sci. 2021 Feb 26;22(5):2333. doi: 10.3390/ijms22052333.
In the process of exploring space, the astronaut's body undergoes a series of physiological changes. At the level of cellular behavior, microgravity causes significant alterations, including bone loss, muscle atrophy, and cardiovascular deconditioning. At the level of gene expression, microgravity changes the expression of cytokines in many physiological processes, such as cell immunity, proliferation, and differentiation. At the level of signaling pathways, the mitogen-activated protein kinase (MAPK) signaling pathway participates in microgravity-induced immune malfunction. However, the mechanisms of these changes have not been fully elucidated. Recent studies suggest that the malfunction of macrophages is an important breakthrough for immune disorders in microgravity. As the first line of immune defense, macrophages play an essential role in maintaining homeostasis. They activate specific immune responses and participate in large numbers of physiological activities by presenting antigen and secreting cytokines. The purpose of this review is to summarize recent advances on the dysfunction of macrophages arisen from microgravity and to discuss the mechanisms of these abnormal responses. Hopefully, our work will contribute not only to the future exploration on the immune system in space, but also to the development of preventive and therapeutic drugs against the physiological consequences of spaceflight.
在探索太空的过程中,宇航员的身体会经历一系列生理变化。在细胞行为层面上,微重力会导致显著的改变,包括骨质流失、肌肉萎缩和心血管功能下降。在基因表达层面上,微重力改变了许多生理过程中细胞因子的表达,如细胞免疫、增殖和分化。在信号通路层面上,丝裂原活化蛋白激酶(MAPK)信号通路参与了微重力引起的免疫功能障碍。然而,这些变化的机制尚未完全阐明。最近的研究表明,巨噬细胞功能障碍是微重力引起免疫紊乱的一个重要突破。作为免疫防御的第一道防线,巨噬细胞在维持体内平衡方面发挥着重要作用。它们通过呈现抗原和分泌细胞因子来激活特定的免疫反应,并参与大量的生理活动。本文的目的是总结微重力引起的巨噬细胞功能障碍的最新进展,并讨论这些异常反应的机制。希望我们的工作不仅有助于未来对太空免疫系统的探索,而且有助于开发针对航天生理后果的预防和治疗药物。