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心血管系统在微重力环境下的适应。

Cardiovascular adaptations in microgravity conditions.

机构信息

Gene Therapy Laboratory, Department of Integrative Biology, School of Bio Sciences and Technology, Vellore Institute of Technology, Vellore 632 014, TN, India.

Gene Therapy Laboratory, Department of Integrative Biology, School of Bio Sciences and Technology, Vellore Institute of Technology, Vellore 632 014, TN, India.

出版信息

Life Sci Space Res (Amst). 2024 Aug;42:64-71. doi: 10.1016/j.lssr.2024.05.001. Epub 2024 May 15.

DOI:10.1016/j.lssr.2024.05.001
PMID:39067992
Abstract

Gravity has had a significant impact on the evolution of life on Earth with organisms developing necessary biological adaptations over billions of years to counter this ever-existing force. There has been an exponential increase in experiments using real and simulated gravity environments in the recent years. Although an understanding followed by discovery of counter measures to negate diminished gravity in space had been the driving force of research initially, there has since been a phenomenal leap wherein a force unearthly as microgravity is beginning to show promising potential. The current review summarizes pathophysiological changes that occur in multiple aspects of the cardiovascular system when exposed to an altered gravity environment leading to cardiovascular deconditioning and orthostatic intolerance. Gravity influences not just the complex multicellular systems but even the survival of organisms at the molecular level by intervening fundamental cellular processes, directly affecting those linked to actin and microtubule organization via mechano-transduction pathways. The reach of gravity ranges from cytoskeletal rearrangement that regulates cell adhesion and migration to intracellular dynamics that dictate cell fate commitment and differentiation. An understanding that microgravity itself is not present on Earth propels the scope of simulated gravity conditions to be a unique and useful environment that could be explored for enhancing the potential of stem cells for a wide range of applications as has been highlighted here.

摘要

重力对地球上生命的进化产生了重大影响,生物在数十亿年的时间里发展出了必要的生物适应性来对抗这种一直存在的力量。近年来,使用真实和模拟重力环境的实验呈指数级增长。尽管最初对太空失重的反重力措施的理解和发现是研究的驱动力,但此后发生了显著的飞跃,微重力等未知力量开始显示出有希望的潜力。本综述总结了心血管系统多个方面在改变重力环境下发生的病理生理变化,导致心血管适应不良和直立不耐受。重力不仅影响复杂的多细胞系统,甚至还通过干预基本的细胞过程,直接影响与肌动蛋白和微管组织相关的过程,从而影响到分子水平上的生物体的生存。重力的作用范围从调节细胞黏附和迁移的细胞骨架重排,到决定细胞命运决定和分化的细胞内动力学。对微重力本身在地球上不存在的理解推动了模拟重力条件的范围成为一个独特而有用的环境,可以探索用于增强干细胞在广泛应用中的潜力,如这里所强调的。

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Cardiovascular adaptations in microgravity conditions.心血管系统在微重力环境下的适应。
Life Sci Space Res (Amst). 2024 Aug;42:64-71. doi: 10.1016/j.lssr.2024.05.001. Epub 2024 May 15.
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