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人 Jurkat 淋巴细胞对模拟微重力条件的生理反应。

Physiological Responses of Jurkat Lymphocytes to Simulated Microgravity Conditions.

机构信息

Department of Neuroscience, Imaging and Clinical Sciences, University "G. d'Annunzio" of Chieti-Pescara, 66100 Chieti, Italy.

Centro Scienze dell' Invecchiamento e Medicina Traslazionale (CeSI-MeT), University "G. d'Annunzio" of Chieti-Pescara, 66100 Chieti, Italy.

出版信息

Int J Mol Sci. 2019 Apr 17;20(8):1892. doi: 10.3390/ijms20081892.

Abstract

The presence of microgravity conditions deeply affects the human body functions at the systemic, organ and cellular levels. This study aimed to investigate the effects induced by simulated-microgravity on non-stimulated Jurkat lymphocytes, an immune cell phenotype considered as a biosensor of the body responses, in order to depict at the cellular level the effects of such a peculiar condition. Jurkat cells were grown at 1 g or on random positioning machine simulating microgravity. On these cells we performed: morphological, cell cycle and proliferation analyses using cytofluorimetric and staining protocols-intracellular Ca, reactive oxygen species (ROS), mitochondria membrane potential and O measurements using fluorescent probes-aconitase and mitochondria activity, glucose and lactate content using colorimetric assays. After the first exposure days, the cells showed a more homogeneous roundish shape, an increased proliferation rate, metabolic and detoxifying activity resulted in decreased intracellular Ca and ROS. In the late exposure time, the cells adapted to the new environmental condition. Our non-activated proliferating Jurkat cells, even if responsive to altered external forces, adapted to the new environmental condition showing a healthy status. In order to define the cellular mechanism(s) triggered by microgravity, developing standardized experimental approaches and controlled cell culture and simulator conditions is strongly recommended.

摘要

微重力环境的存在深刻地影响着人体在系统、器官和细胞水平上的功能。本研究旨在探究模拟微重力对未受刺激的 Jurkat 淋巴细胞的影响,该免疫细胞表型被认为是机体反应的生物传感器,以便在细胞水平上描绘这种特殊条件的影响。Jurkat 细胞在 1g 或随机定位机上生长,以模拟微重力。在这些细胞上,我们使用细胞荧光计和染色方案进行了形态学、细胞周期和增殖分析——使用荧光探针进行细胞内 Ca、活性氧 (ROS)、线粒体膜电位和 O 的测量——使用比色法进行aconitase 和线粒体活性、葡萄糖和乳酸含量的测量。在最初的暴露天数后,细胞呈现出更加均匀的圆形,增殖率增加,代谢和解毒活性导致细胞内 Ca 和 ROS 减少。在晚期暴露时间,细胞适应了新的环境条件。我们的非激活增殖 Jurkat 细胞,即使对改变的外力有反应,也适应了新的环境条件,表现出健康状态。为了确定微重力引发的细胞机制,强烈建议开发标准化的实验方法和受控的细胞培养和模拟器条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/867e/6515345/75e8eacb892a/ijms-20-01892-g001.jpg

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