首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Hyperaggregating effect of hydroxyethyl starch components and University of Wisconsin solution on human red blood cells: a risk of impaired graft perfusion in organ procurement?
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Hyperaggregating effect of hydroxyethyl starch components and University of Wisconsin solution on human red blood cells: a risk of impaired graft perfusion in organ procurement?

机译:羟乙基淀粉成分和威斯康星大学溶液对人类红细胞的过度聚集作用:器官采购中移植物灌注受损的风险?

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摘要

BACKGROUND: The standard preservation solution used during organ procurement and preservation of most organs is the University of Wisconsin (UW) solution. Despite its superiority over other cold storage solutions, the inclusion of hydroxyethyl starch (HES) as one of the components of the UW solution has been both advocated and denied. This study determined whether HES had any effect on red blood cell (RBC) aggregability and correlated aggregation parameters with HES molecular weight. METHODS: Human RBC aggregability and deformability were investigated in vitro, at 4 degrees C, with a laser-assisted optical rotation cell analyzer. The study of RBC aggregation in a binary HES-HES system gave an indication about the nature of HES-RBCs interactions. Bright field microscopy and atomic force microscopy were used to morphologically characterize the aggregates size and form. RESULTS: High molecular weight HES and UW solution had a potent hyperaggregating effect; low molecular weight HES had a hypoaggregating effect on RBC. RBC aggregates were of large size and their resistance to dissociation by flow-induced shear stress was high. CONCLUSION: The authors' in vitro experiments conclusively showed that the physiologic function of RBCs to form aggregates is significantly affected in the presence of HES. The use of high molecular weight HES in UW solution accounts for extended and accelerated aggregation of erythrocytes that may result in stasis of blood and incomplete washout of donor organs before transplantation.
机译:背景:威斯康星大学(UW)解决方案是在器官采购和大多数器官的保存过程中使用的标准保存解决方案。尽管它比其他冷藏解决方案具有优势,但人们一直主张并否认羟乙基淀粉(HES)作为UW解决方案的组成部分之一。这项研究确定了HES是否对红细胞(RBC)的聚集性有任何影响,并将聚集参数与HES分子量相关联。方法:使用激光辅助旋光细胞分析仪在4摄氏度的体外研究人RBC的可凝集性和可变形性。在二元HES-HES系统中对RBC聚集的研究表明了HES-RBCs相互作用的性质。使用明场显微镜和原子力显微镜对聚集体的大小和形式进行形态表征。结果:高分子量的HES和UW溶液具有有效的超聚集作用。低分子量HES对RBC具有聚集作用。 RBC聚集体尺寸较大,并且对流动引起的剪切应力的抗解离性很高。结论:作者的体外实验最终表明,在存在HES的情况下,RBC形成聚集体的生理功能受到显着影响。在UW溶液中使用高分子量HES可导致红细胞的延长和加速聚集,这可能导致血液停滞以及移植前供体器官的冲洗不完全。

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