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空间中的机械免疫调节:涉及微重力诱导T细胞变化的机制

Mechano-Immunomodulation in Space: Mechanisms Involving Microgravity-Induced Changes in T Cells.

作者信息

Dhar Sarit, Kaeley Dilpreet Kaur, Kanan Mohamad Jalal, Yildirim-Ayan Eda

机构信息

Department of Bioengineering, College of Engineering, University of Toledo, Toledo, OH 43606, USA.

Department of Orthopaedic Surgery, University of Toledo Medical Center, Toledo, OH 43614, USA.

出版信息

Life (Basel). 2021 Oct 3;11(10):1043. doi: 10.3390/life11101043.

Abstract

Of the most prevalent issues surrounding long-term spaceflight, the sustainability of human life and the maintenance of homeostasis in an extreme environment are of utmost concern. It has been observed that the human immune system is dysregulated in space as a result of gravitational unloading at the cellular level, leading to potential complications in astronaut health. A plethora of studies demonstrate intracellular changes that occur due to microgravity; however, these ultimately fall short of identifying the underlying mechanisms and dysfunctions that cause such changes. This comprehensive review covers the changes in human adaptive immunity due to microgravity. Specifically, there is a focus on uncovering the gravisensitive steps in T cell signaling pathways. Changes in gravitational force may lead to interrupted immune signaling cascades at specific junctions, particularly membrane and surface receptor-proximal molecules. Holistically studying the interplay of signaling with morphological changes in cytoskeleton and other cell components may yield answers to what in the T cell specifically experiences the consequences of microgravity. Fully understanding the nature of this problem is essential in order to develop proper countermeasures before long-term space flight is conducted.

摘要

在围绕长期太空飞行的最普遍问题中,人类生命的可持续性以及在极端环境中维持体内平衡是最为令人担忧的。据观察,由于细胞水平的重力卸载,人类免疫系统在太空中会失调,这可能导致宇航员健康出现潜在并发症。大量研究表明了微重力导致的细胞内变化;然而,这些研究最终未能确定导致此类变化的潜在机制和功能障碍。这篇综述涵盖了微重力导致的人类适应性免疫变化。具体而言,重点在于揭示T细胞信号通路中对重力敏感的步骤。重力变化可能导致免疫信号级联在特定节点中断,特别是在膜和表面受体近端分子处。全面研究信号传导与细胞骨架及其他细胞成分形态变化之间的相互作用,可能会找到T细胞中具体哪些部分受到微重力影响的答案。在进行长期太空飞行之前,充分理解这个问题的本质对于制定适当的应对措施至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/990b/8537592/4c8e4a589d59/life-11-01043-g001.jpg

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