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模拟微重力会损害人早幼粒细胞中的呼吸爆发活性。

Simulated microgravity impairs respiratory burst activity in human promyelocytic cells.

作者信息

Hughes J H, Long J P

机构信息

Department of Molecular Virology, The Ohio State University, Columbus 43210, USA.

出版信息

In Vitro Cell Dev Biol Anim. 2001 Apr;37(4):209-15. doi: 10.1007/BF02577531.

Abstract

The concept of microgravity (free-fall) influencing cellular functions in nonadherent cells has not been a part of mainstream scientific thought. Utilizing rotating wall vessels (RWVs) to generate simulated microgravity conditions, we found that respiratory burst activity was significantly altered in nonadherent promyelocytic (HL-60) cells. Specifically, HL-60 cells in simulated microgravity for 6, 19, 42, 47, and 49 d had 3.8-fold fewer cells that were able to participate in respiratory burst activity than cells from 1 x g cultures (P = 0.0011, N = 5). The quantity of respiratory burst products from the cells in simulated microgravity was also significantly reduced. The fold increase over controls in mean fluorescence intensities for oxidative products from cells in microgravity was 1.1+/-0.1 versus 1.8+/-0.3 for cells at 1 x g (P = 0.013, N = 4). Furthermore, the kinetic response for phorbol ester-stimulated burst activity was affected by simulated microgravity. These results demonstrate that simulated microgravity alters an innate cellular function (burst activity). If respiratory burst activity is impaired by true microgravity, then recovery from infections during spaceflight could be delayed. Finally, RWVs provide an excellent model for investigating the mechanisms associated with microgravity-induced changes in nonadherent cells.

摘要

微重力(自由落体)影响非贴壁细胞的细胞功能这一概念尚未成为主流科学思想的一部分。利用旋转壁式生物反应器(RWV)来产生模拟微重力条件,我们发现非贴壁早幼粒细胞(HL-60)细胞的呼吸爆发活性发生了显著改变。具体而言,在模拟微重力环境中培养6、19、42、47和49天的HL-60细胞,能够参与呼吸爆发活性的细胞数量比1xg培养条件下的细胞少3.8倍(P = 0.0011,N = 5)。模拟微重力环境下细胞呼吸爆发产物的量也显著减少。微重力环境下细胞氧化产物平均荧光强度相对于对照组的增加倍数为1.1±0.1,而1xg条件下细胞为1.8±0.3(P = 0.013,N = 4)。此外,佛波酯刺激的爆发活性的动力学响应受到模拟微重力的影响。这些结果表明,模拟微重力改变了一种先天性细胞功能(爆发活性)。如果真正的微重力会损害呼吸爆发活性,那么太空飞行期间感染后的恢复可能会延迟。最后,RWV为研究与微重力诱导的非贴壁细胞变化相关的机制提供了一个极好的模型。

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