首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >Comparison between manufacturing sites shows differential adhesion, activation, and GPIbα expression of cryopreserved platelets
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Comparison between manufacturing sites shows differential adhesion, activation, and GPIbα expression of cryopreserved platelets

机译:制造部位之间的比较显示了冷冻保存血小板的差异粘附,激活和GPIBα表达

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摘要

BACKGROUND Transfusion of cryopreserved platelets (cryoplatelets) is not common but may replace standard liquid‐preserved platelets (PLTs) in specific circumstances. To better understand cryoplatelet function, frozen concentrates from different manufacturing sites were compared. STUDY DESIGN AND METHODS Cryoplatelets from Denver, Colorado (DEN); Sydney, Australia (SYD); and Ghent, Belgium (GHE) were compared (n = 6). A paired noncryopreserved control was included in Ghent. Microfluidic‐flow chambers were used to study PLT adhesion and fibrin deposition in reconstituted blood. Receptor expression was measured by flow cytometry. Coagulation in static conditions was evaluated by rotational thromboelastometry (ROTEM). RESULTS Regardless of the manufacturing site, adhesion of cryoplatelets under shear flow (1000/sec) was significantly (p 0.05) reduced compared to control. Expression of GPIbα was decreased in a subpopulation of cryoplatelets comprising 45% ± 11% (DEN), 63% ± 9% (GHE), and 94% ± 6% (SYD). That subpopulation displayed increased annexin V binding and decreased integrin activation. PLT adhesion, agglutination, and aggregation were moreover decreased in proportion to that subpopulation. Fibrin deposition under shear flow was normal but initiated faster (546 ± 163 sec GHE) than control PLTs (631 ± 120 sec, p 0.01), only in the absence of tissue factor. In static conditions, clotting time was faster, but clot firmness decreased compared to control. Coagulation was not different between manufacturing sites. CONCLUSION Cryopreservation results in a subset of PLTs with enhanced GPIbα shedding, increased phosphatidylserine expression, reduced integrin response, and reduced adhesion to collagen in microfluidic models of hemostasis. The proportion of this phenotype is different between manufacturing sites. The clinical effects, if any, will need to be verified.
机译:冷冻保存的血小板(冷冻谱)的背景输出不常见,但在特定情况下可以取代标准的液体保存的血小板(PLTS)。为了更好地理解冷冻蛋白功能,比较来自不同制造部位的冷冻浓缩物。研究设计与方法丹佛,科罗拉多州(DEN)的Cryoplatelets;悉尼,澳大利亚(SYD);比较比利时(GHE)(n = 6)。特征的非髓等金属对照被包括在根特中。微流体流量室用于研究重构血液中的PLT粘附和纤维蛋白沉积。通过流式细胞术测量受体表达。通过旋转血栓间弹性测定法(Rotem)评估静态条件下的凝结。结果无论制造部位如何,与对照相比,剪切流动(1000 /秒)下冷冻谱的粘附性显着(P <0.05)。在含有45%±11%(DEN),63%±9%(GHE)的冷冻蛋白群中,GPIBα的表达降低,63%±9%(GHE)和94%±6%(SYD)。该亚群显示出吞并载蛋白v的增加和减少整合素激活。此外,PLT粘附,凝集和聚集成比例地降低。在剪切流动下纤维蛋白沉积是正常的,但比对照PLTS(546±163秒)开始(546±163秒)(631±120秒,P <0.01),仅在没有组织因子的情况下。在静态条件下,凝血时间更快,但与对照相比,凝块的坚定性降低。制造场所之间的凝固在不含量。结论冷冻保存导致具有增强的GPIBα脱落的PLTS子集,增加磷脂酰丝氨酸表达,降低整联蛋白响应,并降低对止血的微流体模型中胶原蛋白的粘附性。这种表型的比例在制造部位之间存在不同。需要验证临床影响,如果有的话。

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