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首页> 外文期刊>Biological & pharmaceutical bulletin >Lipid Peroxidation in Egg Phosphatidylcholine Liposomes: Comparative Studies on the Induction Systems Fe~(2+) / Ascorbate and Fe~(3+)-Chelates/Xanthine-Xanthine Oxidase
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Lipid Peroxidation in Egg Phosphatidylcholine Liposomes: Comparative Studies on the Induction Systems Fe~(2+) / Ascorbate and Fe~(3+)-Chelates/Xanthine-Xanthine Oxidase

机译:卵磷脂酰胆碱脂质体中脂质的过氧化作用:Fe〜(2 +)/抗坏血酸和Fe〜(3 +)-螯合物/黄嘌呤-黄嘌呤氧化酶诱导系统的比较研究

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摘要

Two typical systems of lipid peroxidation in egg yolk phosphatidylcholine (egg PC) liposomes were compared: an enzymic system involving superoxide (O^T) generated by xanthine (X), xanthinc oxidase (XO) and Fe3+-chelates (Fe3+-ADP and Fe3+-EDTA), and a non-enzymic system involing ascorbic acid (AsA) and Fe2 + . These two systems exhibited a different pH-dependence: the rate in the enzymic system was maximal at pH 8—8.5, wheareas that in the non-enzymic system was high below pH 7.4 and low above pH 7.6. The rates of lipid peroxidation differed with the membrane charge, and this charge-dependent phenomenon differed in the two peroxidation systems: in the Fe3+-chelates/X-XO-syslem, the rate was slow in neutrally charged egg PC liposomes and rapid in egg PC liposomes containing negatively charged dicetylphosphate (DCP) or positively charged stearylamine (SA), whereas in the Fe2l7 AsA-system, the rate was rapid in neutral egg PC liposomes but no lipid peroxidation occurred in egg PC liposomes charged with DCP or SA. The decomposition rate of the hydroperoxide of PC (PC-OOH) incorporated into dimyristoyl-phosphatidylcholine (DMPC) liposomes differed depending on the membrane charge in the two systems and this charge-dependence of the rates correlated well with that of the initiation rate of lipid peroxidation dependent on membrane charge. In the Fe2 +/AsA-system, lipid peroxidation depended on the endogenous presence of PC-OOH, and the amounts of PC-OOH required for initiation of the reaction differed depending on the membrane charge. However, in the Fe3+-chelates/X-XO-system, lipid peroxidation occurred very slowly in the absence of PC-OOH, but rapidly in its presence.
机译:比较了蛋黄磷脂酰胆碱(eg PC PC)脂质体中脂质过氧化的两个典型系统:酶系统涉及黄嘌呤(X),黄嘌呤氧化酶(XO)和Fe3 +-螯合物(Fe3 + -ADP和Fe3 + -EDTA)和涉及抗坏血酸(AsA)和Fe2 +的非酶系统。这两个系统表现出不同的pH依赖性:酶体系的速率在pH 8-8.5时最大,而在非酶体系中则高于pH 7.4和低于pH 7.6。脂质过氧化的速率随膜电荷的不同而不同,并且在两种过氧化系统中,这种依赖电荷的现象也不同:在Fe3 +-螯合物/ X-XO系统中,中性电荷的蛋PC脂质体的速度较慢,而在蛋中的速度较快含有带负电的磷酸二十六烷基酯(DCP)或带正电的硬脂胺(SA)的PC脂质体,而在Fe2A1 AsA系统中,中性鸡蛋PC脂质体的速度很快,但在装有DCP或SA的鸡蛋PC脂质体中未发生脂质过氧化。掺入二豆蔻油基磷脂酰胆碱(DMPC)脂质体中的PC的氢过氧化物(PC-OOH)的分解速率取决于两个系统中的膜电荷,并且速率的这种电荷依赖性与脂质的起始速率密切相关过氧化取决于膜电荷。在Fe2 + / AsA-系统中,脂质过氧化取决于PC-OOH的内源性存在,而引发反应所需的PC-OOH量取决于膜电荷。然而,在Fe3 +-螯合物/ X-XO系统中,在没有PC-OOH的情况下脂质过氧化发生得非常缓慢,但在存在PC-OOH的情况下会很快发生。

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