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[Studies of red blood cells biochemistry and erythropoiesis intensity in humans during the 520-day isolation study]. | LitMetric

Erythrocyte metabolism and erythropoiesis intensity were investigated in the humans subjects (6 males, 25 to 37 yrs. of age) volunteered for experimental simulation of such factors in a mission to Mars as very long duration (520-d) of isolation and confinement, autonomy, delayed communication, emergencies, and limited consumable resources. Venous blood and extracted erythrocytes were analyzed in the baseline data collection period (2 wks. before the experiment), on days 60, 120, 170, 240, 300, 360, 417 and 510 of the experiment and on days 7-8 after its completion. Erythrocyte metabolic and plasmatic membrane parameters were measured. Blood serum was analyzed for iron turnover; erythropoiesis intensity was evaluated by the erythropoietin level. According to the results of the investigation, there were phase-type shifts in the parameters throughout the experiment that were particularly significant on days 60 and 120. Inhibition of energy-production and enhancement of reparative processes in the cell could be tokens of compensatory reactions aimed to control oxidation processes and to raise antioxidation efficiency of the cell. The phase-type changes in membrane lipids and phospholipids point to increased microviscosity of the plasmatic membrane at the beginning and then end of the experiment. Hemoglobin content in blood and erythrocytes showed a significant increase on day-510 of isolation and in the ensuing recovery period. Data about iron turnover and erythropoietin level evidence an adequate bone marrow response to the changed hemoglobin content in blood.

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