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红细胞对冷藏保存、复壮及冷冻保存的代谢反应。

Red blood cell metabolic responses to refrigerated storage, rejuvenation, and frozen storage.

作者信息

D'Alessandro Angelo, Gray Alan D, Szczepiorkowski Zbigniew M, Hansen Kirk, Herschel Louise H, Dumont Larry J

机构信息

Department of Biochemistry and Molecular Genetics, University of Colorado Denver-Anschutz Medical Campus, Aurora, Colorado.

Citra Labs, Braintree, Massachusetts.

出版信息

Transfusion. 2017 Apr;57(4):1019-1030. doi: 10.1111/trf.14034. Epub 2017 Mar 10.

Abstract

BACKGROUND

Storage of red blood cells (RBCs) under blood bank conditions promotes metabolic modulation within the RBC. This "metabolic storage lesion" may affect the quality and safety of the transfused RBCs. The aim of this study is to determine the metabolic changes in stored RBCs over 42 days of routine storage followed by a US Food and Drug Administration-approved method of rejuvenation, freezing, and preparation for transfusion.

STUDY DESIGN AND METHODS

We exploited a mass spectrometry-based metabolomics approach to monitor 42-day-stored citrate phosphate dextrose/AS-1 RBCs (n = 29) that were rejuvenated, glycerolized and frozen, then thawed and deglycerolized, and held for 24 hours at 1 to 6ºC in saline-glucose.

RESULTS

Previously reported metabolic alterations were confirmed in 42-day-old RBCs. In this study, in total, 181 (62%) of the biochemical compounds exhibited significant (p ≤ 0.05) change compared with Day 0 values. Rejuvenation restored adenosine triphosphate and 2,3-diphosphoglycerate levels, replenished purine reservoirs, up regulated glycolysis, increased levels of pentose phosphate pathway intermediates, and partially rescued glutathione biosynthesis. Increased levels of lysophospholipid in rejuvenated RBCs suggests the activation of recycling pathways of damaged membrane lipids, in which a total of 167 (57%) biochemical compounds showed significant change compared with Day 42 values.

CONCLUSION

Rejuvenation reversed over one-half of the metabolic biochemical compounds evaluated compared with Day 42 values, and the compounds were stable through frozen storage and preparation for transfusion. Rejuvenation promoted significant metabolic reprogramming, including the reactivation of energy-generating and antioxidant pathways (the pentose phosphate pathway and glutathione homeostasis), salvage reactions, cofactor reservoirs, and membrane lipid recycling.

摘要

背景

在血库条件下储存红细胞(RBC)会促进RBC内的代谢调节。这种“代谢储存损伤”可能会影响输注RBC的质量和安全性。本研究的目的是确定在常规储存42天,随后采用美国食品药品监督管理局批准的复苏、冷冻和输血准备方法后,储存RBC的代谢变化。

研究设计与方法

我们采用基于质谱的代谢组学方法,监测储存42天的枸橼酸盐磷酸盐葡萄糖/AS-1 RBC(n = 29),这些RBC先进行复苏、甘油化和冷冻,然后解冻、去甘油化,并在1至6℃的葡萄糖盐水中保存24小时。

结果

在42日龄的RBC中证实了先前报道的代谢改变。在本研究中,与第0天的值相比,总共181种(62%)生化化合物表现出显著(p≤0.05)变化。复苏恢复了三磷酸腺苷和2,3-二磷酸甘油酸水平,补充了嘌呤储备,上调了糖酵解,增加了磷酸戊糖途径中间体的水平,并部分挽救了谷胱甘肽生物合成。复苏的RBC中溶血磷脂水平升高表明受损膜脂的循环途径被激活,与第42天的值相比,共有167种(57%)生化化合物表现出显著变化。

结论

与第42天的值相比,复苏逆转了超过一半评估的代谢生化化合物,并且这些化合物在冷冻储存和输血准备过程中保持稳定。复苏促进了显著的代谢重编程,包括能量生成和抗氧化途径(磷酸戊糖途径和谷胱甘肽稳态)的重新激活、补救反应、辅因子储备和膜脂循环。

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