Van Aelst Britt, Feys Hendrik B, Devloo Rosalie, Vandekerckhove Philippe, Compernolle Veerle
Transfusion Research Center, Belgium Red Cross-Flanders.
Transfusion Research Center, Belgium Red Cross-Flanders;
J Vis Exp. 2016 Mar 19(109):53823. doi: 10.3791/53823.
Blood platelets prepared for transfusion gradually lose hemostatic function during storage. Platelet function can be investigated using a variety of (indirect) in vitro experiments, but none of these is as comprehensive as microfluidic flow chambers. In this protocol, the reconstitution of thrombocytopenic fresh blood with stored blood bank platelets is used to simulate platelet transfusion. Next, the reconstituted sample is perfused in microfluidic flow chambers which mimic hemostasis on exposed subendothelial matrix proteins. Effects of blood donation, transport, component separation, storage and pathogen inactivation can be measured in paired experimental designs. This allows reliable comparison of the impact every manipulation in blood component preparation has on hemostasis. Our results demonstrate the impact of temperature cycling, shear rates, platelet concentration and storage duration on platelet function. In conclusion, this protocol analyzes the function of blood bank platelets and this ultimately aids in optimization of the processing chain including phlebotomy, transport, component preparation, storage and transfusion.
用于输血的血小板在储存过程中会逐渐失去止血功能。血小板功能可以通过各种(间接)体外实验来研究,但这些实验都不如微流控流动腔全面。在本方案中,用储存的血库血小板对血小板减少的新鲜血液进行重构,以模拟血小板输血。接下来,将重构后的样本灌注到微流控流动腔中,该流动腔模拟暴露的内皮下基质蛋白上的止血过程。在配对实验设计中,可以测量献血、运输、成分分离、储存和病原体灭活的影响。这使得能够可靠地比较血液成分制备中的每一个操作对止血的影响。我们的结果证明了温度循环、剪切速率、血小板浓度和储存时间对血小板功能的影响。总之,本方案分析了血库血小板的功能,这最终有助于优化包括静脉穿刺、运输、成分制备、储存和输血在内的处理流程。