Farrugia A, Douglas S, Williams S, Kellner S, Amerena L, James J
Blood Processing Department, Red Cross Blood Bank, South Melbourne, Victoria, Australia.
Transfus Med. 1991 Mar;1(1):31-8. doi: 10.1111/j.1365-3148.1991.tb00006.x.
The licensed balanced salt solution Plasma-Lyte, buffered with a clinical solution of sodium bicarbonate, was evaluated as a suspending fluid for platelet concentrates. Platelets suspended in this medium showed better pH maintenance over 5 days of storage compared to platelets stored in plasma (7.0 vs 6.45, P < 0.001). This was reflected in improvements in in-vitro indicators of platelet viability-hypotonic shock response (79 vs 48%, P < 0.05), aggregation to paired agonists (86 vs 62%, P < 0.05); and platelet size distribution (104 vs 119%, P < 0.001). Dissolved bicarbonate measurement showed less depletion of bicarbonate in the synthetic medium compared to plasma, which suggests a lower rate of lactate formation. A synthetic medium containing dextrose showed inferior platelet storage characteristics when compared to the plasma-lyte/bicarbonate medium in a paired study (Day 5, pH 6.53 vs 6.9, P < 0.05). The results suggest that utilization of substrates other than dextrose allows platelets to metabolize without the accumulation of lactate that leads to pH drops during storage in plasma, and continue to support the feasibility of storing platelets in a non-plasma environment.
用临床碳酸氢钠溶液缓冲的许可平衡盐溶液Plasma-Lyte被评估为血小板浓缩物的悬浮液。与储存在血浆中的血小板相比,悬浮在这种培养基中的血小板在储存5天后显示出更好的pH维持(7.0对6.45,P<0.001)。这反映在血小板活力的体外指标改善上——低渗休克反应(79%对48%,P<0.05)、对配对激动剂的聚集(86%对62%,P<0.05);以及血小板大小分布(104%对119%,P<0.001)。溶解碳酸氢盐测量显示,与血浆相比,合成培养基中碳酸氢盐的消耗更少,这表明乳酸形成率更低。在一项配对研究中,与血浆-Lyte/碳酸氢盐培养基相比,含葡萄糖的合成培养基显示出较差的血小板储存特性(第5天,pH 6.53对6.9,P<0.05)。结果表明,利用除葡萄糖以外的底物可使血小板在不积累导致血浆储存期间pH下降的乳酸的情况下进行代谢,并继续支持在非血浆环境中储存血小板的可行性。