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Alkaline CPD and the preservation of RBC 2,3-DPG.

机译:碱性CPD和RBC 2,3-DPG的保存。

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BACKGROUND: Concentrations of 2,3-DPG decline rapidly in the first week of RBC storage because of the low pH of conventional storage solutions. Alkaline additive solutions, which can preserve RBCs for up to 11 weeks, still do not preserve 2,3-DPG because the starting pH is below 7.2. STUDY DESIGN AND METHODS: Alkaline CPD (pH=8.7) was made with trisodium citrate, dextrose, and disodium phosphate. Twelve units of whole blood were collected into heparin and pooled in groups of four units. Each pool was then aliquoted into four units; 63 mL of CPD with pH 5.7, 6.5, 7.5, or 8.7 was added to one unit of each pool, and 300 mL of the alkaline experimental additive solution-76 was added. In Study 2, 12 units were collected into alkaline CPD, pooled in groups of four, aliquoted as described, and stored in four variants of experimental additive solution-76 containing 0, 9, 18, and 27 mM of disodium phosphate. RBC ATP and 2,3-DPG concentrations, intracellular and extracellular pH and phosphate concentrations, hemolysis, and other measures of RBC metabolism and function were measured weekly. RESULTS: RBCs stored in more alkaline conditions made 2,3-DPG, but at the expense of ATP. Concentrations of 2,3-DPG decreased after 2 weeks storage, but ATP concentrations never fully recovered. Providing more phosphate both increased the duration of 2,3-DPG persistence and raised ATP concentrations in the later stages of storage. CONCLUSIONS: Maintaining both 2,3-DPG and ATP requires both high pH and high concentrations of phosphate.
机译:背景:由于常规储存溶液的pH值低,在RBC储存的第一周中2,3-DPG的浓度迅速下降。碱性添加剂溶液可以保留RBC长达11周,但由于起始pH值低于7.2,因此仍不能保留2,3-DPG。研究设计和方法:用柠檬酸三钠,葡萄糖和磷酸氢二钠制得碱性CPD(pH = 8.7)。将十二单位全血收集到肝素中,并分成四个单位。然后将每个池分成四个单元。将63 mL pH 5.7、6.5、7.5或8.7的CPD添加到每个池的一个单元中,然后添加300 mL碱性实验添加剂溶液-76。在研究2中,将12个单位收集到碱性CPD中,按四个等分的方式合并,并按照说明等分,然后存储在包含0、9、18和27 mM磷酸二钠的实验添加剂溶液76的四个变体中。每周测量RBC ATP和2,3-DPG浓度,细胞内和细胞外pH和磷酸盐浓度,溶血以及RBC代谢和功能的其他测量。结果:在更碱性条件下储存的RBC产生了2,3-DPG,但以ATP为代价。储存2周后2,3-DPG的浓度下降,但ATP的浓度从未完全恢复。提供更多的磷酸盐既增加了2,3-DPG持久性的持续时间,又提高了后期储存阶段的ATP浓度。结论:维持2,3-DPG和ATP都需要高pH和高浓度磷酸盐。

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