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首页> 外文期刊>Brain pathology >The biochemistry of the isoprostane, neuroprostane, and isofuran Pathways of lipid peroxidation.
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The biochemistry of the isoprostane, neuroprostane, and isofuran Pathways of lipid peroxidation.

机译:脂质过氧化的异前列腺素,神经前列腺素和异呋喃的生化途径。

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摘要

Isoprostanes are prostaglandin-like compounds that are formed non-enzymatically by free radical-catalyzed peroxidation of arachidonic acid (C20:4omega6). Intermediates in the pathway of the formation of isoprostanes are labile prostaglandin H2-like bicyclic endoperoxides (H2-isoprostanes). H2-isoprostanes are reduced to form F-ring isoprostanes (F2-isoprostanes), but they also undergo chemical rearrangement in vivo to form E2- and D2-isoprostanes, isothromboxanes, and highly reactive acyclic y-ketoaldehdyes (isoketals). E2- and D2-isoprostanes also undergo dehydration in vivo to form cyclopentenone A2- and J2-isoprostanes. Docosahexaenoic acid (C22:6omega3) is highly enriched in neurons in the brain and is highly susceptible to oxidation. Free radical-catalyzed oxidation of docosahexaenoic acid results in the formation of isoprostane-like compounds (neuroprostanes). F4-, D4-, E4-, A4-, and J4-neuroprostanes and neuroketals have all been shown to be produced in vivo. In addition, we recently discovered a new pathway of lipid peroxidation that forms compounds with a substituted tetrahydrofuran ring (isofurans). Oxygen concentration differentially modulates the formation of isoprostanes and isofurans. As oxygen concentrations increase, the formation of isofurans is favored whereas the formation of isoprostanes becomes disfavored.
机译:异前列腺素是类前列腺素类化合物,通过花生四烯酸(C20:4omega6)的自由基催化过氧化反应非酶促形成。异前列腺素形成途径中的中间体是不稳定的前列腺素H2样双环内过氧化物(H2-异前​​列腺素)。 H2-异前​​列腺素被还原形成F环异前列腺素(F2-异前列腺素),但它们在体内也会发生化学重排,从而形成E2-和D2-异前列腺素,异戊烷和高反应性的无环Y-酮醛(异缩酮)。 E2-和D2-异前列腺素在体内也脱水形成环戊烯酮A2-和J2-异前列腺素。二十二碳六烯酸(C22:6omega3)在大脑中的神经元中高度富集,并且极易被氧化。二十二碳六烯酸的自由基催化氧化作用导致形成异前列腺素样化合物(神经前列腺素)。 F4-,D4-,E4-,A4-和J4-神经前列腺素和神经缩酮均已显示在体​​内产生。此外,我们最近发现了脂质过氧化作用的新途径,该途径与取代的四氢呋喃环(异呋喃)形成化合物。氧浓度差异地调节异前列腺素和异呋喃的形成。随着氧浓度增加,有利于异呋喃的形成,而异前列腺素的形成变得不利。

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