International Journal of Molecular Sciences (Apr 2019)

Physiological Responses of Jurkat Lymphocytes to Simulated Microgravity Conditions

  • Caterina Morabito,
  • Paola Lanuti,
  • Giusy A. Caprara,
  • Marco Marchisio,
  • Mariano Bizzarri,
  • Simone Guarnieri,
  • Maria A. Mariggiò

DOI
https://doi.org/10.3390/ijms20081892
Journal volume & issue
Vol. 20, no. 8
p. 1892

Abstract

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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 Ca2+, reactive oxygen species (ROS), mitochondria membrane potential and O2− 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 Ca2+ 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.

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