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葡萄糖-6-磷酸脱氢酶缺乏症患者新鲜冰冻血浆的氧化还原状态、促凝血活性和代谢组学

Redox Status, Procoagulant Activity, and Metabolome of Fresh Frozen Plasma in Glucose 6-Phosphate Dehydrogenase Deficiency.

作者信息

Tzounakas Vassilis L, Gevi Federica, Georgatzakou Hara T, Zolla Lello, Papassideri Issidora S, Kriebardis Anastasios G, Rinalducci Sara, Antonelou Marianna H

机构信息

Department of Biology, School of Science, National and Kapodistrian University of Athens, Athens, Greece.

Department of Ecological and Biological Sciences, University of Tuscia, Viterbo, Italy.

出版信息

Front Med (Lausanne). 2018 Feb 5;5:16. doi: 10.3389/fmed.2018.00016. eCollection 2018.

Abstract

OBJECTIVE

Transfusion of fresh frozen plasma (FFP) helps in maintaining the coagulation parameters in patients with acquired multiple coagulation factor deficiencies and severe bleeding. However, along with coagulation factors and procoagulant extracellular vesicles (EVs), numerous bioactive and probably donor-related factors (metabolites, oxidized components, etc.) are also carried to the recipient. The X-linked glucose 6-phosphate dehydrogenase deficiency (G6PD), the most common human enzyme genetic defect, mainly affects males. By undermining the redox metabolism, the G6PD cells are susceptible to the deleterious effects of oxidants. Considering the preferential transfusion of FFP from male donors, this study aimed at the assessment of FFP units derived from G6PD males compared with control, to show whether they are comparable at physiological, metabolic and redox homeostasis levels.

METHODS

The quality of  = 12 G6PD and control FFP units was tested after 12 months of storage, by using hemolysis, redox, and procoagulant activity-targeted biochemical assays, flow cytometry for EV enumeration and phenotyping, untargeted metabolomics, in addition to statistical and bioinformatics tools.

RESULTS

Higher procoagulant activity, phosphatidylserine positive EVs, RBC-vesiculation, and antioxidant capacity but lower oxidative modifications in lipids and proteins were detected in G6PD FFP compared with controls. The FFP EVs varied in number, cell origin, and lipid/protein composition. Pathway analysis highlighted the riboflavin, purine, and glycerolipid/glycerophospholipid metabolisms as the most altered pathways with high impact in G6PD. Multivariate and univariate analysis of FFP metabolomes showed excess of diacylglycerols, glycerophosphoinositol, aconitate, and ornithine but a deficiency in riboflavin, flavin mononucleotide, adenine, and arginine, among others, levels in G6PD FFPs compared with control.

CONCLUSION

Our results point toward a different redox, lipid metabolism, and EV profile in the G6PD FFP units. Certain FFP-needed patients may be at greatest benefit of receiving FFP intrinsically endowed by both procoagulant and antioxidant activities. However, the clinical outcome of G6PD FFP transfusion would likely be affected by various other factors, including the signaling potential of the differentially expressed metabolites and EVs, the degree of G6PD, the redox status in the recipient, the amount of FFP units transfused, and probably, the storage interval of the FFP, which deserve further investigation by future studies.

摘要

目的

输注新鲜冰冻血浆(FFP)有助于维持获得性多种凝血因子缺乏和严重出血患者的凝血参数。然而,除了凝血因子和促凝细胞外囊泡(EVs)外,许多生物活性物质以及可能与供体相关的因子(代谢物、氧化成分等)也会被输送给受者。X连锁葡萄糖6磷酸脱氢酶缺乏症(G6PD)是最常见的人类酶遗传缺陷,主要影响男性。通过破坏氧化还原代谢,G6PD细胞易受氧化剂的有害影响。考虑到优先输注男性供体的FFP,本研究旨在评估来自G6PD男性的FFP单位与对照组相比的情况,以表明它们在生理、代谢和氧化还原稳态水平上是否具有可比性。

方法

在储存12个月后,通过使用针对溶血、氧化还原和促凝活性的生化检测、用于EV计数和表型分析的流式细胞术、非靶向代谢组学,以及统计和生物信息学工具,对12个G6PD和对照FFP单位的质量进行了测试。

结果

与对照组相比,在G6PD FFP中检测到更高的促凝活性、磷脂酰丝氨酸阳性EVs、红细胞囊泡化和抗氧化能力,但脂质和蛋白质中的氧化修饰较低。FFP EVs在数量、细胞来源和脂质/蛋白质组成方面存在差异。通路分析突出显示核黄素、嘌呤以及甘油脂/甘油磷脂代谢是G6PD中改变最大且影响较大的通路。对FFP代谢组的多变量和单变量分析显示,与对照组相比,G6PD FFP中甘油二酯、甘油磷酸肌醇、乌头酸和鸟氨酸过量,但核黄素、黄素单核苷酸、腺嘌呤和精氨酸等水平不足。

结论

我们的结果表明G6PD FFP单位在氧化还原、脂质代谢和EV谱方面存在差异。某些需要FFP的患者可能从接受具有促凝和抗氧化活性的内在FFP中获益最大。然而,G6PD FFP输血的临床结果可能会受到各种其他因素的影响,包括差异表达的代谢物和EVs的信号传导潜力、G6PD的程度、受者的氧化还原状态、输注的FFP单位数量,以及可能的FFP储存间隔,这些都值得未来的研究进一步探讨。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5767/5807665/3df0c1e10cc6/fmed-05-00016-g001.jpg

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