[储存红细胞浓缩物的流变学变化]。

E P Zilow, G Zilow, P Ruef, O Linderkamp
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引用次数: 0

摘要

研究了两种不同保存液对红细胞浓缩物平均红细胞体积(MCV)、红细胞变形能力和窄管流动的影响。来自10名健康献血者的血液在相同的等分中在SAG-M (S-RBC)和PAGGS-M (P-RBC)中并行处理。分别在贮藏第0、7、14、28和42天对样品进行研究。用杜邦细胞计数仪测定MCV。用Myrenne Rheodyn测定全细胞的变形能力。用毛细管粘度法测定了窄管中的粘度降低。P-RBC在整个贮存期内MCV不变。相比之下,S-RBC的MCV升高,MCHC降低。P-RBC在储存过程中表现出相似的变形能力和粘度降低,而S-RBC的变形能力下降,粘度降低不明显。我们的研究显示了P-RBC优越的流变特性。因此,PAGGS-M可能比SAG-M提供更好的血红蛋白通量和组织氧运输。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Rheologic changes in stored erythrocyte concentrates].

We studied the effect of two different preservation solutions on mean corpuscular volume (MCV), red cell deformability and flow in narrow tubes in red blood cell concentrates. Blood from 10 healthy blood donors was processed in parallel in SAG-M (S-RBC) as well as in PAGGS-M (P-RBC) in identical aliquots. Samples were studied at days 0, 7, 14, 28 and 42 of storage. MCV was determined using a Du Pont cell counter. Whole cell deformability was determined in a Myrenne Rheodyn. Viscosity reduction in narrow tubes was determined by means of capillary viscosimetry. P-RBC showed a constant MCV over the entire storage period. In contrast, MCV of S-RBC increased and MCHC decreased during storage. P-RBC showed similar deformability and viscosity reduction during storage, whereas deformability decreased and viscosity reduction became less pronounced for S-RBC. Our study shows superior rheological properties of P-RBC. Thus, PAGGS-M may provide better hemoglobin flux and oxygen transport to tissues than SAG-M.

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