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Na+-K+ pump and metabolic activities of trout erythrocytes during anoxia   总被引:1,自引:0,他引:1  
Metabolic activity in the red blood cells of brown trout wasmonitored under conditions of oxygen depletion and chemically inducedanoxia. Although metabolic activity was reduced during anoxia toone-third of the normoxic value, these cells maintained their ATPcontents stable and were viable for hours in the absence of oxygen. Inaddition,Na+-K+pump activity was not down-regulated when metabolic activity wasreduced during anoxia. The compatibility of this finding with energyequilibrium and ion homeostasis was investigated.

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Hemolysis is a very common phenomenon and is referred as the release of intracellular components from red blood cells to the extracellular fluid. Hemolyzed samples are often rejected in clinics due to the interference of hemoglobin and intracellular components in laboratory measurements. Plasma and serum based vibrational spectroscopy studies are extensively applied to generate spectral biomarkers for various diseases. However, no studies have reported the effect of hemolysis in blood based vibrational spectroscopy studies. This study was undertaken to evaluate the effect of hemolysis on infrared and Raman spectra of blood plasma. In this study, prostate cancer plasma samples (n = 30) were divided into three groups (nonhemolyzed, mildly hemolyzed, and moderately hemolyzed) based on the degree of hemolysis and FTIR and Raman spectra were recorded using high throughput (HT)‐FTIR and HT‐Raman spectroscopy. Discrimination was observed between the infrared and Raman spectra of nonhemolyzed and hemolyzed plasma samples using principal component analysis. A classical least square fitting analysis showed differences in the weighting of pure components in nonhemolyzed and hemolyzed plasma samples. Therefore, it is worth to consider the changes in spectral features due to hemolysis when comparing the results within and between experiments.  相似文献   

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The percentage of erthrocytes with thorn-shaped protuberances--echinocytes--was calculated in the blood smears of 10 healthy men before and after a 48 hour sharp hypobaric hypoxia in the climatic chamber of Tabai. The absorbtion spectra at the range 400-650 nm were investigated in the smooth erythrocytes and echinocytes. The methemoglobin content in the echinocytes is higher than in the smooth erythrocytes. The sharp hypobaric hypoxia results in the increase in the percentage of echinocytes and erythrocytes with fetal hemoglobin, in the change of osmotic stability and acidic resistance of erythrocytes, and in the rise of peroxid oxidation of lipids. The role of methemoglobin production upon a sharp hypobaric hypoxia is discussed.  相似文献   

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SANS studies of interacting hemoglobin in intact erythrocytes.   总被引:1,自引:1,他引:1       下载免费PDF全文
Small angle neutron scattering (SANS) was used to investigate interaction forces between hemoglobin (Hb) molecules contained within human red cells. The scattering separately attributable to cell membranes and intracellular Hb was identified. A series of D2O-H2O contrast variation measurements were made in order to establish conditions for which scattering from the cell membrane is minimized (approximately 15% D2O). Measurements then were performed to examine changes in intermolecular Hb interactions occurring when the cells are contracted or swollen by varying the ionic strength of the suspension buffer. The scattering cross-sections were fitted to structure factors computed by a mean spherical approximation, and molecular parameters thereby extracted. Oxygenation studies on normal cells were performed, and results contrasted with those of similar studies of erythrocytes obtained from sickle cell disease patients.  相似文献   

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Using the factor analysis, it was shown that the total content of hemoglobin in human blood plays a limited and indirect role in the regulation of average electrophoretic mobility of erythrocytes. In this case, it is not the only parameter governing this level. The statistical relationship between the total content of hemoglobin and erythrocyte mobility in electrical field is not stable and is determined by the dependence of both indices on their common factor of control of erythroid homeostasis.  相似文献   

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