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首页> 外文期刊>Transfusion: The Journal of the American Association of Blood Banks >Prolonged maintenance of 2,3-diphosphoglycerate acid and adenosine triphosphate in red blood cells during storage.
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Prolonged maintenance of 2,3-diphosphoglycerate acid and adenosine triphosphate in red blood cells during storage.

机译:储存期间红细胞中2,3-二磷酸甘油酸和三磷酸腺苷的维持时间延长。

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BACKGROUND: Current additive solutions (ASs) for red cells (RBCs) do not maintain a constant level of critical metabolites such as adenosine triphosphate (ATP) and 2,3-diphosphoglycerate acid (2,3-DPG) during cold storage. From the literature it is known that the intracellular pH is an important determinant of RBC metabolism. Therefore, a new, alkaline, AS was developed with the aim to allow cold storage of RBCs with stable product characteristics. STUDY DESIGN AND METHODS: Whole blood-derived RBCs (leukoreduced) were resuspended in experimental medium phosphate-adenine-guanosine-glucose-gluconate-mannitol (PAGGG-M; pH 8.2) with and without washing in the same medium. During cold storage several in vitro variables, such as intracellular pH, 2,3-DPG, ATP, and hemolysis, were analyzed. RESULTS: During cold storage, RBCs resuspended in PAGGG-M showed a constant ATP level (approx. 6 mumol/g Hb) and a very limited hemolysis (0.2%). The 2,3-DPG content showed an increase until Day 21 (150% of initial level), followed by a slow decrease, with at Day 35 still 100 percent of the initial level. RBCs washed in PAGGG-M even showed a continuous increase of 2,3-DPG during 35 days, with a maximum level of 200 percent of the initial value. The effect of PAGGG-M appears to be related to long-lasting effects of the initial intracellular pH shortly after production. CONCLUSION: Resuspension of RBCs in our alkaline medium PAGGG-M resulted in a RBC unit of high quality during storage for up to at least 35 days, with 2,3-DPG levels of higher than 10 mumol per g Hb, hemolysis of less than 0.2 percent, and ATP levels of higher than 5 mumol per g Hb.
机译:背景:目前用于红细胞(RBC)的添加剂溶液(ASs)不能在冷藏期间维持恒定水平的关键代谢物,例如三磷酸腺苷(ATP)和2,3-二磷酸甘油酸(2,3-DPG)。从文献中知道,细胞内pH是RBC代谢的重要决定因素。因此,开发了一种新的碱性AS,其目的是使具有稳定产品特性的RBC能够冷藏。研究设计和方法:将全血来源的RBCs(白细胞减少的)重悬于实验培养基磷酸盐-腺嘌呤-鸟苷-葡萄糖-葡萄糖酸-甘露醇(PAGGG-M; pH 8.2)中,在相同的培养基中洗涤或不洗涤。在冷藏期间,分析了几个体外变量,例如细胞内pH,2,3-DPG,ATP和溶血。结果:冷藏期间,重新悬浮在PAGGG-M中的RBC显示出恒定的ATP水平(约6μmol/ g Hb)和非常有限的溶血(<0.2%)。 2,3-DPG含量显示增加直至第21天(初始水平的150%),然后缓慢下降,第35天仍为初始水平的100%。在PAGGG-M中洗涤的RBC在35天中甚至显示2,3-DPG连续增加,最高水平为初始值的200%。生产后不久,PAGGG-M的作用似乎与初始细胞内pH值的持久作用有关。结论:在我们的碱性培养基PAGGG-M中重新悬浮红细胞,可以在储存至少35天的时间内提供高质量的红细胞单元,其中2,3-DPG的含量高于10 mol / g Hb,溶血小于0.2%,且ATP含量高于每克Hb 5摩尔。

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