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首页> 外文期刊>Vox Sanguinis: International Journal of Blood Transfusion and Immunohaematology >A novel protocol for cryopreservation of paediatric red blood cell units allows increased availability of rare blood types
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A novel protocol for cryopreservation of paediatric red blood cell units allows increased availability of rare blood types

机译:一种新的儿科红细胞和儿科红细胞化合物的协议允许增加稀有血液类型的可用性

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Background and objectives There is a growing concern for shortage in future blood supply, caused by a predicted decrease in eligible blood donors and simultaneous increase in recipients. Cryopreservation of split red blood cell units could increase stock supply by reducing waste of rare blood. This would be particularly useful in paediatric care where very small volumes often are transfused. The aim of this study was to develop a cryopreservation protocol for split units using the closed‐system automated cell processor ACP215, as such protocols are currently missing. Materials and methods Using a pool‐and‐split design, red blood cell units (N?=?8) were glycerolized and frozen, either as standard volume reference units, or further divided into three smaller split units each. After thawing/deglycerolization, the supernatant of the smaller splits was reduced by additional centrifugation, and new SAGM was added to 60% haematocrit. The units were analysed for storage lesion effects up to ten days post‐thawing. Results Haemolysis and extracellular potassium ion levels were lower in the split units than in the whole units from day three onwards. The metabolic parameters pH, ATP, glucose and lactate were also lower, though likely caused by lower additive solution pH rather than storage. Conclusion Split units of red blood cells can be successfully cryopreserved using the ACP215. In addition to favourably low haemolysis and potassium, they also have higher haematocrit than corresponding whole units and enable involvement of fewer donors at repeated transfusions. These characteristics are all desirable features in paediatric care.
机译:背景和目标对未来血资供应的短缺令人兴趣,由符合条件的献血者的预测降低和接受者同时增加引起的。通过减少稀有血液的浪费来增加分裂红细胞单位的冷冻保存可以增加股票供应。这在小儿护理中特别有用,其中经常转发非常小的体积。本研究的目的是使用闭合系统自动单元处理器ACP215开发用于分割单元的冷冻保存协议,因为此类协议目前缺失。使用池和分裂设计的材料和方法,红细胞单位(N?=Δ8)是甘油化和冷冻的,也可作为标准体积参考单元,或者进一步分为三个较小的分裂单元。在解冻/脱甘油后,通过额外的离心降低较小分裂的上清液,并将新的SagM加入到60%血细胞比容中。分析单位的储存病变效应高达10天后解冻后。结果溶血和细胞外钾离子水平在分裂单元中较低,而不是在三天开始的整个单元。代谢参数pH,ATP,葡萄糖和乳酸也较低,但可能由较低的添加剂溶液pH而不是储存引起的。结论使用ACP215可以成功冷冻保存红细胞的分裂单元。除了有利地低溶血和钾外,它们还具有比相应的整体单位更高的血细胞比容,并使较少的供体涉及重复输血。这些特征是小儿科护理中所需的特征。

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