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葡萄糖-6-磷酸脱氢酶缺乏的受试者可能是比红细胞捐献者更好的“储存者”。

Glucose 6-phosphate dehydrogenase deficient subjects may be better "storers" than donors of red blood cells.

作者信息

Tzounakas Vassilis L, Kriebardis Anastasios G, Georgatzakou Hara T, Foudoulaki-Paparizos Leontini E, Dzieciatkowska Monika, Wither Matthew J, Nemkov Travis, Hansen Kirk C, Papassideri Issidora S, D'Alessandro Angelo, Antonelou Marianna H

机构信息

Department of Cell Biology and Biophysics, Faculty of Biology, NKUA, Athens 15784, Greece.

Laboratory of Hematology and Transfusion Medicine, Department of Medical Laboratories, Faculty of Health and Caring Professions, Technological and Educational Institute of Athens, Athens 12210, Greece.

出版信息

Free Radic Biol Med. 2016 Jul;96:152-65. doi: 10.1016/j.freeradbiomed.2016.04.005. Epub 2016 Apr 14.

Abstract

Storage of packed red blood cells (RBCs) is associated with progressive accumulation of lesions, mostly triggered by energy and oxidative stresses, which potentially compromise the effectiveness of the transfusion therapy. Concerns arise as to whether glucose 6-phosphate dehydrogenase deficient subjects (G6PD(-)), ~5% of the population in the Mediterranean area, should be accepted as routine donors in the light of the increased oxidative stress their RBCs suffer from. To address this question, we first performed morphology (scanning electron microscopy), physiology and omics (proteomics and metabolomics) analyses on stored RBCs from healthy or G6PD(-) donors. We then used an in vitro model of transfusion to simulate transfusion outcomes involving G6PD(-) donors or recipients, by reconstituting G6PD(-) stored or fresh blood with fresh or stored blood from healthy volunteers, respectively, at body temperature. We found that G6PD(-) cells store well in relation to energy, calcium and morphology related parameters, though at the expenses of a compromised anti-oxidant system. Additional stimuli, mimicking post-transfusion conditions (37°C, reconstitution with fresh healthy blood, incubation with oxidants) promoted hemolysis and oxidative lesions in stored G6PD(-) cells in comparison to controls. On the other hand, stored healthy RBC units showed better oxidative parameters and lower removal signaling when reconstituted with G6PD(-) fresh blood compared to control. Although the measured parameters of stored RBCs from the G6PD deficient donors appeared to be acceptable, the results from the in vitro model of transfusion suggest that G6PD(-) RBCs could be more susceptible to hemolysis and oxidative stresses post-transfusion. On the other hand, their chronic exposure to oxidative stress might make them good recipients, as they better tolerate exposure to oxidatively damaged long stored healthy RBCs.

摘要

浓缩红细胞(RBCs)的储存与病变的逐渐积累有关,这些病变主要由能量和氧化应激引发,这可能会损害输血治疗的效果。鉴于地中海地区约5%的人群为葡萄糖6磷酸脱氢酶缺乏症患者(G6PD(-)),考虑到他们的红细胞所遭受的氧化应激增加,对于他们是否应被接纳为常规献血者存在担忧。为了解决这个问题,我们首先对来自健康或G6PD(-)献血者的储存红细胞进行了形态学(扫描电子显微镜)、生理学和组学(蛋白质组学和代谢组学)分析。然后,我们使用体外输血模型来模拟涉及G6PD(-)献血者或受血者的输血结果,分别在体温下用健康志愿者的新鲜或储存血液重构G6PD(-)储存或新鲜血液。我们发现,G6PD(-)细胞在能量、钙和形态相关参数方面储存良好,尽管是以抗氧化系统受损为代价。模拟输血后条件(37°C,用新鲜健康血液重构,与氧化剂孵育)的额外刺激与对照组相比,促进了储存的G6PD(-)细胞的溶血和氧化损伤。另一方面,与对照组相比,当用G6PD(-)新鲜血液重构时,储存的健康红细胞单位显示出更好的氧化参数和更低的清除信号。尽管来自G6PD缺乏症献血者的储存红细胞的测量参数似乎是可以接受的,但体外输血模型的结果表明,G6PD(-)红细胞在输血后可能更容易发生溶血和氧化应激。另一方面,它们长期暴露于氧化应激可能使它们成为良好的受血者,因为它们能更好地耐受暴露于氧化损伤的长期储存的健康红细胞。

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