The Changes of Elongation Index of erythrocytes caused by storage of blood at low temperature

IF 0.7 Q4 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING Polish Journal of Medical Physics and Engineering Pub Date : 2023-03-01 DOI:10.2478/pjmpe-2023-0004
Iwona Dylong, P. Dolibog, Tomasz Mularz, J. Młynarski, S. Grzegorczyn
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Abstract

Abstract Introduction: An important parameter characterizing the ability of erythrocytes to deform depending on the blood flow conditions is the Elongation Index (EI), and it is a parameter defined by the shape of the erythrocyte obtained as a diffraction pattern of erythrocytes at different values of shear stresses. Material and methods: EI measurements at different shear stress were performed by Laser-assisted Optical Rotational Cell Analyzer (LORRCA) for erythrocytes derived from Tissue Bank in Katowice. Measurements were performed immediately after receiving them from Tissue Bank and after 2, 9, and 28 days of storage of samples at the temperature of 4°C in solution with the anticoagulant. Results: An increase in the erythrocytes Elongation Index in the first 9 days of storing samples at low temperatures was observed in the entire range of applied shear stresses. This indicates an increase in the elasticity of erythrocytes during short-term storage at 4°C. In turn, on the 28th day of erythrocyte storage, a significant decrease in the Elongation Index for shear stresses greater than 1 Pa was observed, which indicates the stiffening of the erythrocyte membrane structure, reducing their elasticity. The relative decrease in the Elongation Index of erythrocytes stored for 28 days compared to erythrocytes measured at the beginning was similar and slightly greater than 30% for shear stresses greater than 3 Pa. For shear stresses lower than 3 Pa, the relative change in elongation index was smaller than for shear stresses greater than 3 Pa and increased with the increase in shear stress. Conclusions: The elongation index of erythrocytes stored in the anticoagulant solution at 4°C, initially increases in the entire range of applied shear stresses in the first few days from the moment of blood collection and preparation at the Tissue Bank, and then decreases, but on the ninth day of storage the elongation index is still higher than for blood immediately after collection.
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低温贮藏引起红细胞伸长指数的变化
摘要简介:表征红细胞随血流条件而变形能力的一个重要参数是延伸指数(EI),它是由红细胞在不同剪切应力值下的衍射图所获得的红细胞形状所定义的参数。材料和方法:利用激光辅助光学旋转细胞分析仪(LORRCA)对来自卡托维兹组织库的红细胞进行了不同剪切应力下的EI测量。从组织库接收样本后,在抗凝剂溶液中4°C温度下保存2、9和28天后立即进行测量。结果:在整个施加剪切应力的范围内,红细胞伸长指数在低温保存的前9天有所增加。这表明红细胞在4°C短期储存期间弹性增加。在第28天,当剪应力大于1 Pa时,红细胞膜的伸长指数显著下降,表明红细胞膜结构变硬,弹性降低。当剪应力大于3 Pa时,保存28 d的红细胞的伸长指数相对于开始时的下降幅度相似,略大于30%。当剪应力小于3 Pa时,伸长率的相对变化小于大于3 Pa时,且随剪应力的增大而增大。结论:4℃抗凝溶液中保存的红细胞在组织库采血准备后的头几天内,在整个施加剪切应力范围内,延长指数呈先升高后降低的趋势,但在保存第9天,延长指数仍高于立即采血后的延长指数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Polish Journal of Medical Physics and Engineering
Polish Journal of Medical Physics and Engineering RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING-
CiteScore
1.30
自引率
0.00%
发文量
19
期刊介绍: Polish Journal of Medical Physics and Engineering (PJMPE) (Online ISSN: 1898-0309; Print ISSN: 1425-4689) is an official publication of the Polish Society of Medical Physics. It is a peer-reviewed, open access scientific journal with no publication fees. The issues are published quarterly online. The Journal publishes original contribution in medical physics and biomedical engineering.
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