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Individual Osmotic Fragility Distribution: A New Parameter for Determination of the Osmotic Properties of Human Red Blood Cells

机译:单个渗透脆性分布:确定人类红细胞渗透特性的新参数

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摘要

The aim of our experiments was to characterise and to validate the osmotic fragility test when applied to human blood samples with no significant alterations of osmotic fragility but with a differentiating shape of the haemolysis curve. All experiments were carried out on human erythrocytes taken from the Regional Centre of Blood Donation and Blood Therapy in Wrocław. The washed erythrocytes were exposed to near-infrared radiation (NIR) or ozonated, and the osmotic fragility test was applied. The osmotic fragility, calculated from the experimental haemolysis curve for the control and cells irradiated for 15 min, is the same within the empirical error. Calculation of the first derivative of the haemolysis curve allowed us to visualise the changes in osmotic fragility distribution after exposure to NIR. By contrast, significant changes both to the osmotic fragility value and the distribution of osmotic properties were observed after an erythrocytes ozonation procedure. Description of cell osmotic properties requires at least two parameters—the value of osmotic fragility and the slope of the haemolysis curve in the region where absorbance sharply increases due to cell haemolysis.
机译:我们实验的目的是表征和验证渗透压测试,该测试应用于人体血液样本时,渗透压脆性没有明显变化,但溶血曲线的形状有所不同。所有实验都是在从弗罗茨瓦夫的献血和血液疗法区域中心获取的人类红细胞上进行的。将洗涤后的红细胞暴露于近红外辐射(NIR)或进行臭氧处理,然后进行渗透脆性测试。从实验和对照的溶血曲线上计算出的渗透性脆性在15分钟内仍是相同的,但在经验误差范围内是相同的。溶血曲线一阶导数的计算使我们可以直观地看到暴露于NIR之后的渗透脆性分布变化。相比之下,在红细胞臭氧化过程之后,观察到渗透脆性值和渗透特性分布的显着变化。对细胞渗透特性的描述至少需要两个参数-渗透脆性值和由于细胞溶血而导致吸光度急剧增加的区域中的溶血曲线的斜率。

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