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Restoration of Physiological Levels of Uric Acid and Ascorbic Acid Reroutes the Metabolism of Stored Red Blood Cells

机译:恢复尿酸和抗坏血酸的生理水平会改变红细胞代谢的途径

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摘要

After blood donation, the red blood cells (RBCs) for transfusion are generally isolated by centrifugation and then filtrated and supplemented with additive solution. The consecutive changes of the extracellular environment participate to the occurrence of storage lesions. In this study, the hypothesis is that restoring physiological levels of uric and ascorbic acids (major plasmatic antioxidants) might correct metabolism defects and protect RBCs from the very beginning of the storage period, to maintain their quality. Leukoreduced CPD-SAGM RBC concentrates were supplemented with 416 µM uric acid and 114 µM ascorbic acid and stored during six weeks at 4 °C. Different markers, i.e., haematological parameters, metabolism, sensitivity to oxidative stress, morphology and haemolysis were analyzed. Quantitative metabolomic analysis of targeted intracellular metabolites demonstrated a direct modification of several metabolite levels following antioxidant supplementation. No significant differences were observed for the other markers. In conclusion, the results obtained show that uric and ascorbic acids supplementation partially prevented the metabolic shift triggered by plasma depletion that occurs during the RBC concentrate preparation. The treatment directly and indirectly sustains the antioxidant protective system of the stored RBCs.
机译:献血后,通常通过离心分离用于输血的红细胞(RBC),然后过滤并添加添加剂溶液。细胞外环境的连续变化参与了存储损伤的发生。在这项研究中,假设是恢复尿酸和抗坏血酸(主要的血浆抗氧化剂)的生理水平可以纠正新陈代谢缺陷,并从存储期的一开始就保护红细胞,以保持其质量。向白细胞减少的CPD-SAGM RBC浓缩液中补充416 µM尿酸和114 µM抗坏血酸,并在4°C下保存6周。分析了不同的标志物,即血液学参数,代谢,对氧化应激的敏感性,形态和溶血作用。靶向细胞内代谢物的定量代谢组学分析表明,在补充抗氧化剂后,几种代谢物的水平可以直接改变。其他标记没有观察到显着差异。总之,获得的结果表明,补充尿酸和抗坏血酸可部分阻止RBC浓缩物制备过程中发生的血浆耗竭触发的代谢变化。该处理直接和间接维持了所储存的RBC的抗氧化剂保护系统。

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