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Exploratory studies of extended storage of apheresis platelets in a platelet additive solution (PAS)

机译:血液分离术血小板在血小板添加剂溶液(PAS)中的扩展存储的探索性研究

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摘要

To evaluate the poststorage viability of apheresis platelets stored for up to 18 days in 80% platelet additive solution (PAS)/20% plasma, 117 healthy subjects donated platelets using the Haemonetics MCS+, COBE Spectra (Spectra), or Trima Accel (Trima) systems. Control platelets from the same subjects were compared with their stored test PAS platelets by radiolabeling their stored and control platelets with either 51chromium or 111indium. Trima platelets met Food and Drug Administration poststorage platelet viability criteria for only 7 days vs almost 13 days for Haemonetics platelets; ie, platelet recoveries after these storage times averaged 44 ± 3% vs 49 ± 3% and survivals were 5.4 ± 0.3 vs 4.6 ± 0.3 days, respectively. The differences in storage duration are likely related to both the collection system and the storage bag. The Spectra and Trima platelets were hyperconcentrated during collection, and PAS was added, whereas the Haemonetics platelets were elutriated with PAS, which may have resulted in less collection injury. When Spectra and Trima platelets were stored in Haemonetics' bags, poststorage viability was significantly improved. Platelet viability is better maintained in vitro than in vivo, allowing substantial increases in platelet storage times. However, implementation will require resolution of potential bacterial overgrowth during storage. (Blood. 2014;123(2):271-280),
机译:为了评估在80%血小板添加剂溶液(PAS)/ 20%血浆中存储长达18天的单采单采血小板的储存后生存力,我们使用Haemonetics MCS +,COBE Spectra(Spectra)或Trima Accel(Trima)捐赠了117名健康受试者的血小板系统。通过用51铬或111铟放射性标记其储存和对照血小板,将来自同一受试者的对照血小板与储存的测试PAS血小板进行比较。 Trima血小板仅满足食品和药物管理局储存后血小板生存能力标准的7天,而Haemonetics血小板则接近13天。也就是说,这些储存时间后的血小板回收率平均分别为44±3%和49±3%,存活时间分别为5.4±0.3和4.6±0.3天。存放时间的差异可能与收集系统和存放袋有关。在收集过程中,Spectra和Trima血小板高度浓缩,并添加了PAS,而用PAS洗脱了Haemonetics血小板,这可能减少了收集伤害。将Spectra和Trima血小板储存在Haemonetics的包装袋中后,储存后的生存能力得到了显着改善。体外比体内更好地维持了血小板的活力,从而大大增加了血小板的储存时间。但是,实施将需要解决存储过程中潜在细菌过度生长的问题。 (Blood.2014; 123(2):271-280),

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