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Cold storage of platelets in additive solution: the impact of residual plasma in apheresis platelet concentrates

机译:血小板在添加剂溶液中的冷存储:单采血液分离血小板浓缩物中残留血浆的影响

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Platelet transfusion has become essential therapy in modern medicine. Although the clinical advantage of platelet transfusion has been well established, adverse reactions upon transfusion, especially transmission of bacterial infection, still represent a major challenge. While bacterial contamination is favored by the storage of platelets at room temperature, cold storage may represent a solution for this important clinical issue. In this study, we aimed to clarify whether plasma has protective or detrimental effects on cold-stored platelets. We investigated the impact of different residual plasma contents in apheresis-derived platelet concentrates, stored at 4°C or room temperature, on platelet function and survival. We found that platelets stored at 4°C have higher expression of apoptosis marker compared to platelets stored at room temperature, leading to accelerated clearance from the circulation in a humanized animal model. While cold-induced apoptosis was independent of the residual plasma concentration, cold storage was associated with better adhesive properties and higher response to activators. Interestingly, delta (δ) granule-related functions, such as ADP-mediated aggregation and CD63 release, were better preserved at 4°C, especially in 100% plasma. An extended study to assess cold-stored platelet concentrates produced under standard care Good Manufacturing Practice conditions showed that platelet function, metabolism and integrity were better compared to those stored at room temperature. Taken together, our results show that residual plasma concentration does not have a cardinal impact on the cold storage lesions of apheresis-derived platelet concentrates and indicate that the current generation of additive solutions represent suitable substitutes for plasma to store platelets at 4°C.
机译:血小板输注已成为现代医学中必不可少的疗法。尽管已经很好地确立了血小板输注的临床优势,但是输血后的不良反应,特别是细菌感染的传播,仍然是一个重大挑战。虽然室温下血小板的存储有利于细菌的污染,但冷藏可以代表这一重要临床问题的解决方案。在这项研究中,我们旨在阐明血浆对冷藏血小板有保护作用还是有害作用。我们调查了单采血液分离血小板浓缩物中不同残留血浆含量在4°C或室温下储存对血小板功能和存活率的影响。我们发现,与在室温下储存的血小板相比,在4°C下储存的血小板具有更高的凋亡标记物表达,从而导致人源化动物模型中循环的清除加速。尽管冷诱导的细胞凋亡与残留血浆浓度无关,但是冷存储与更好的粘合性能和对活化剂的更高响应有关。有趣的是,与δ(δ)颗粒相关的功能,例如ADP介导的聚集和CD63释放,在4°C下能更好地保存,尤其是在100%血浆中。一项扩展研究评估了在标准护理质量管理规范条件下生产的冷藏血小板浓缩物,与在室温下保存的血小板浓缩物相比,血小板功能,代谢和完整性更好。综上所述,我们的结果表明,血浆残留浓度对单采血液分离血小板浓缩液的冷库损伤无主要影响,并表明当前一代添加剂溶液代表血浆在4°C储存血小板的合适替代品。

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