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Injury of rat thymocytes caused by exogenous peroxyl radicals in vitro

机译:外源过氧自由基对大鼠胸腺细胞的损伤

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摘要

The aim of this study was to investigate oxidative cell injury in rat thymocytes under conditions of radical generation exterior to the cell utilizing the thermolabile azocompound 2,2′-azobis(2-amidinopropane) dihydrochloride to generate peroxyl radicals at a constant and reproducible rate. This initiator, being water-soluble and endowed with a positive charge, is suitable for studies on oxidative damage of biomembranes induced in the external water environment. The relationship between cell viability, lipid and thiol oxidation and chain-breaking antioxidant depletion was studied. During the first hour of treatment cell viability decreased slightly, protein sulfhydryl groups were consumed slowly and no significant production of conjugated dienes occurred. After 90 min of incubation, when thymocyte permeability started to increase, the concentration of α-tocopherol decreased gradually, significant changes of polyunsaturated fatty acids occurred and a rapid phase of thiol oxidation commenced. It can be concluded that, under conditions of an exogenous oxidant challenge, initially the cell membrane provides a physical barrier to the entrance of radicals to the thymocyte. When peroxyl radicals gain access to the membrane and the molecular barrier begins to disorganize, the oxidizable cellular components become susceptible to massive attack.
机译:这项研究的目的是利用热不稳定的偶氮化合物2,2'-偶氮二(2-ami基丙烷)二盐酸盐以恒定且可重复的速率研究细胞外部产生自由基的条件下,大鼠胸腺细胞的氧化细胞损伤。这种引发剂是水溶性的,并带有正电荷,适用于研究在外部水环境中引起的生物膜的氧化损伤。研究了细胞活力,脂质和硫醇氧化与链断裂抗氧化剂消耗之间的关系。在处理的第一个小时中,细胞生存力略有下降,蛋白质巯基被缓慢消耗,并且没有产生明显的共轭二烯。孵育90分钟后,当胸腺细胞通透性开始增加时,α-生育酚的浓度逐渐降低,多不饱和脂肪酸发生显着变化,并开始快速的硫醇氧化阶段。可以得出结论,在外源性氧化剂攻击的条件下,最初,细胞膜为自由基进入胸腺细胞提供了物理屏障。当过氧自由基进入细胞膜并且分子屏障开始混乱时,可氧化的细胞成分容易受到大规模攻击。

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