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为期五周的红细胞储存与2,3-二磷酸甘油酸的保存

Five-week red cell storage with preservation of 2,3 DPG.

作者信息

Carmen R A, Sohmer P R, Leng B S, Moore G L, Nelson E J, Simon T L, Myhre B A, Marcus C S, Moroff G, Lewis L M

机构信息

Cutter Biological, Division of Miles Laboratories, Inc., Berkeley, California.

出版信息

Transfusion. 1988 Mar-Apr;28(2):157-61. doi: 10.1046/j.1537-2995.1988.28288179021.x.

Abstract

The 2,3 diphosphoglycerate (2,3 DPG) content of red cells stored in current anticoagulant-preservative products decreases rapidly after the first few days of storage, and by 3 weeks the red cells are essentially depleted of 2,3 DPG. Because ascorbic acid and ascorbate-2-phosphate (A-2-P) are effective in maintaining erythrocyte 2,3 DPG during liquid preservation, ascorbate was stabilized through autoclaving and subsequent storage by adding it as the trisodium salt of A-2-P to a phosphate-adenine-saline solution at a pH of 8.5 to 9.0. Red cell concentrates prepared from blood drawn into citrate-phosphate-double-dextrose were supplemented with the A-2-P additive solution (AS-4) and studied in vitro and in vivo. Mean 2,3 DPG values for 22 units were 147.6, 113.5, and 82.3 percent of initial value after storage for 3, 4, and 5 weeks, respectively. Maintenance of 2,3 DPG was at the expense of adenosine triphosphate (ATP), which fell to as low as 22.2 percent of initial value after 5 weeks. Despite the low ATP values, the 24 hour 51Cr-labeled red cell recoveries averaged 80.8 and 74.1 percent after 4 and 5 weeks of storage, respectively. The AS-4 system provides a red cell product with acceptable viability and improved oxygen off-loading function.

摘要

在目前的抗凝保存液产品中储存的红细胞,其2,3-二磷酸甘油酸(2,3-DPG)含量在储存的最初几天之后迅速下降,到3周时红细胞中的2,3-DPG基本耗尽。由于抗坏血酸和抗坏血酸-2-磷酸酯(A-2-P)在液体保存期间能有效维持红细胞中的2,3-DPG,因此通过将其作为A-2-P的三钠盐添加到pH值为8.5至9.0的磷酸盐-腺嘌呤-盐溶液中,经高压灭菌并随后储存来使抗坏血酸稳定。从采集到枸橼酸盐-磷酸盐-双葡萄糖中的血液制备的红细胞浓缩物用A-2-P添加剂溶液(AS-4)进行补充,并进行体外和体内研究。22个单位的红细胞在储存3、4和5周后的平均2,3-DPG值分别为初始值的147.6%、113.5%和82.3%。2,3-DPG的维持是以三磷酸腺苷(ATP)为代价的,5周后ATP降至初始值的22.2%。尽管ATP值较低,但在储存4周和5周后,24小时51Cr标记红细胞回收率分别平均为80.8%和74.1%。AS-4系统提供了一种具有可接受的生存能力和改善的氧卸载功能的红细胞产品。

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