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Glutathione loading prevents free radical injury in red blood cells after storage.

机译:储存谷胱甘肽可防止红细胞受到自由基损伤。

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We have previously demonstrated that the loss of glutathione (GSH) and GSH-peroxidase (GSH-PX) in banked red blood cells (RBCs) is accompanied by oxidative modifications of lipids, proteins and loss of membrane integrity. The objective of this study was to determine whether artificial increases in antioxidant (GSH) or antioxidant enzyme (catalase) content could protect membrane damage in the banked RBCs following an oxidant challenge. RBCs stored at 1-6 degrees C for 0, 42 and 84 days in a conventional additive solution (Adsol) were subjected to oxidative stress using ferric/ascorbic acid (Fe/ASC) before and after enriching them with GSH or catalase using a hypotonic lysis-isoosmotic resealing procedure. This lysis-resealing procedure in the presence of GSH/catalase raised intracellular GSH and catalase concentrations 4-6 fold, yet produced only a small reduction in mean cell volume (MCV), mean cell hemoglobin (MCH) and mean cell hemoglobin concentrations (MCHC). Indicators of oxidative stress and membrane integrity were measured, including acetylcholinesterase (AChE) activity, GSH concentration, phosphatidylserine (PS) externalization (prothrombin-converting activity) and transmembrane lipid movements (14C-lyso phosphatidylcholine flip-flop and PS transport). GSH-enrichment protected AChE activity in fresh (0 day) and stored (42 and 84 days) RBCs from Fe/ASC oxidation by 10, 23 and 26%, respectively, compared with not-enriched controls. Following oxidative stress, the rate of transbilayer lipid flip-flop did not increase in fresh cells, but increased 9.3% in 42-day stored cells. Phosphatidylserine exposure, as measured by prothrombinase activity, increased 2.4-fold in fresh and 5.2-fold in 42-day stored cells exposed to Fe/ASC. Previous studies have shown that 42-day storage causes a moderate decrease in PS transport (approximately 50%), whereas transport rates declined by up to 75% in stored RBCs when challenged with Fe/ASC. GSH-enrichment prevented the increase in passive lipid flip-flop and the increase in prothrombinase activity, but offered no protection against oxidative damage of PS transport. In contrast to these effects, catalase-enrichment failed to protect GSH levels and AChE activity upon oxidative stress. Membrane protein thiol oxidation was assessed by labeling reactive protein thiols with 5-acetalamidofluorescein followed by immunoblotting with antifluorescein antibodies. Significant oxidation of membrane proteins was confirmed by a greater loss of thiols in stored RBCs than in fresh RBCs. These results demonstrate that it may be possible to prevent storage-mediated loss of AChE, increased lipid flip-flop, and increased PS exposure, by maintaining or increasing GSH levels of banked RBCs.
机译:我们以前已经证明,在堆积的红细胞(RBC)中谷胱甘肽(GSH)和GSH-过氧化物酶(GSH-PX)的损失伴随着脂质,蛋白质的氧化修饰和膜完整性的丧失。这项研究的目的是确定人工增加的抗氧化剂(GSH)或抗氧化剂酶(过氧化氢酶)的含量是否可以保护在受到氧化剂攻击后堤岸RBC中的膜损伤。在常规添加剂溶液(Adsol)中于1-6摄氏度下储存0、42和84天的RBC在使用高渗或高渗GSH或过氧化氢酶富集之前和之后,都使用铁/抗坏血酸(Fe / ASC)经受氧化应激。裂解-等渗再密封程序。在GSH /过氧化氢酶存在的情况下,这种裂解-重新密封程序将细胞内GSH和过氧化氢酶的浓度提高了4-6倍,但平均细胞体积(MCV),平均细胞血红蛋白(MCH)和平均细胞血红蛋白浓度(MCHC)仅产生了少量降低)。测量了氧化应激和膜完整性的指标,包括乙酰胆碱酯酶(AChE)活性,GSH浓度,磷脂酰丝氨酸(PS)外在化(凝血酶原转化活性)和跨膜脂质运动(14C-溶血磷脂酰胆碱触发器和PS转运)。与未富集的对照相比,富集GSH可以保护新鲜(0天)和来自Fe / ASC氧化的RBC储存(42天和84天)的AChE活性分别为10%,23%和26%。氧化应激后,在新鲜细胞中,跨双层脂质翻转的速率没有增加,但是在储存42天的细胞中增加了9.3%。通过凝血酶原酶活性测定,磷脂酰丝氨酸的暴露在新鲜的Fe / ASC中储存42天的细胞中新鲜时增加2.4倍,而在42天中增加5.2倍。以前的研究表明,储存42天会导致PS转运量的适度下降(约50%),而当受Fe / ASC攻击时,贮存的RBC的转运率最多下降75%。 GSH的富集阻止了被动脂质触发器的增加和凝血酶原活性的增加,但没有提供针对PS转运的氧化损伤的保护作用。与这些作用相反,过氧化氢酶富集不能在氧化应激时保护GSH水平和AChE活性。膜蛋白硫醇氧化的评估方法是:用5-乙酰胺基荧光素标记反应蛋白硫醇,然后用抗荧光素抗体进行免疫印迹。储存的RBC中硫醇的损失比新鲜RBC中的硫醇损失更大,证实了膜蛋白的显着氧化。这些结果表明,通过维持或增加库存的RBC的GSH水平,可以预防AChE的存储介导损失,脂质翻转增加和PS暴露增加。

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