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α-生育酚与FC-43全氟碳乳剂联合应用于大鼠烧伤后早期,可提高抗氧化能力、抑制自由基损伤及红细胞聚集性。

Increased antioxidant capacity, suppression of free radical damage and erythrocyte aggrerability after combined application of alpha-tocopherol and FC-43 perfluorocarbon emulsion in early postburn period in rats.

作者信息

Bekyarova G, Yankova T, Galunska B

机构信息

Department of Pathophysiology, University of Medicine Varna, Bulgaria.

出版信息

Artif Cells Blood Substit Immobil Biotechnol. 1996 Nov;24(6):629-41. doi: 10.3109/10731199609118888.

Abstract

Certain rheological disorders such as enhanced aggregation and reduced deformability of erythrocytes are closely associated with microcirculatory disturbances, decreased tissue oxygen supply and represent a major problem in severely burnt patients [1-4]. Vitamin E (alpha-tocopherol) and vitamin A (retinol) exert an important plasma antioxidant properties against free radical-induced damage [11,12]. They possess chain-breaking properties and act as synergists [13]. Plasma antioxidant capacity may be decreased in severely burnt patients as a result of the enhanced consumption and inadequate restoration of antioxidants in the conditions of activated peroxidative process [14]. Treatment with alpha-tocopherol suppresses lipid peroxidation in blood and therefore improves erythrocyte rheology [15]. Perfluorocarbon emulsions improve microcirculation and rheological blood properties [16-18] and preserve the structure and function of endothelial cells [19]. The very small particle size, low viscosity and high oxygen carrying capacity ensure their penetration into the microvasculature even under conditions of ischemia and acidosis [20, 21]. Perfluorocarbons have been reported to inhibit leukocyte activation and superoxide radical production [22]. The aim of the present study was to examine the antioxidant capacity, free radical mediated damage and erythrocyte aggregation in plasma of rats with thermal skin injury in the early postburn period and to evaluate the effect of treatment with alpha-tocopherol and FC-43 perfluorocarbon emulsion alone and in combination. We might conclude that thermal skin injury in rats reduces the antioxidant capacity, enhances free radical mediated damage and erythrocyte aggregation on the third hour after injury. The combined application of alpha-tocopherol and FC-43 perfluorocarbon emulsion immediately after thermal skin injury in rats increases plasma antioxidant capacity, decreases free radical mediated damage of erythrocytes and suppresses their aggregation on the third hour after the injury.

摘要

某些流变学紊乱,如红细胞聚集增强和变形性降低,与微循环障碍、组织氧供应减少密切相关,是重度烧伤患者的一个主要问题[1-4]。维生素E(α-生育酚)和维生素A(视黄醇)具有重要的血浆抗氧化特性,可抵抗自由基诱导的损伤[11,12]。它们具有断链特性并起协同作用[13]。在过氧化过程激活的情况下,由于抗氧化剂消耗增加和恢复不足,重度烧伤患者的血浆抗氧化能力可能会降低[14]。用α-生育酚治疗可抑制血液中的脂质过氧化,从而改善红细胞流变学[15]。全氟碳乳剂可改善微循环和血液流变学特性[16-18],并维持内皮细胞的结构和功能[19]。其非常小的粒径、低粘度和高携氧能力确保它们即使在缺血和酸中毒的情况下也能渗透入微血管[20,21]。据报道,全氟碳可抑制白细胞活化和超氧自由基的产生[22]。本研究的目的是检测热皮肤损伤大鼠伤后早期血浆中的抗氧化能力、自由基介导的损伤和红细胞聚集情况,并评估单独及联合应用α-生育酚和FC-43全氟碳乳剂的治疗效果。我们可以得出结论,大鼠热皮肤损伤会降低抗氧化能力,增强自由基介导的损伤以及伤后3小时的红细胞聚集。大鼠热皮肤损伤后立即联合应用α-生育酚和FC-43全氟碳乳剂可提高血浆抗氧化能力,减少自由基介导的红细胞损伤,并抑制伤后3小时的红细胞聚集。

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