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 protocolsintracellular Ca2+, reactive oxygen species (ROS), mitochondria membrane potential and O-2(-) measurements using fluorescent probesaconitase 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.

Physiological Responses of Jurkat Lymphocytes to Simulated Microgravity Conditions / Morabito, Caterina; Lanuti, Paola; Caprara, Giusy A; Marchisio, Marco; Bizzarri, Mariano; Guarnieri, Simone; Mariggiò, Maria A. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 20:8(2019), p. 1892. [10.3390/ijms20081892]

Physiological Responses of Jurkat Lymphocytes to Simulated Microgravity Conditions

Bizzarri, Mariano;
2019

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 protocolsintracellular Ca2+, reactive oxygen species (ROS), mitochondria membrane potential and O-2(-) measurements using fluorescent probesaconitase 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.
2019
cell shape; cytoskeletal remodelling; lymphocytes; oxidative stress; simulated-microgravity
01 Pubblicazione su rivista::01a Articolo in rivista
Physiological Responses of Jurkat Lymphocytes to Simulated Microgravity Conditions / Morabito, Caterina; Lanuti, Paola; Caprara, Giusy A; Marchisio, Marco; Bizzarri, Mariano; Guarnieri, Simone; Mariggiò, Maria A. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 20:8(2019), p. 1892. [10.3390/ijms20081892]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1682731
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