Department of Biology, Ecology, and Earth Sciences, University of Calabria, Rende, (CS), Italy.
J Physiol Pharmacol. 2020 Feb;71(1). doi: 10.26402/jpp.2020.1.07. Epub 2020 Jun 13.
This review aims to describe the action sites of the oxidative stress products for 4-hydroxy-2E-nonenal, on subcellular fractions of eukaryotic cells from several tissues. Described also are; the detoxification mechanisms from derivatives of 4-hydroxy-2E-nonenal. All dangerous compounds for subcellular fractions are metabolites of a respiratory chain that can give stable products of oxidative compounds and are intermediates of other oxidation reaction chains. Finally, the balancing among the illustrated processes to identify the relative oxidative power of several metabolic chains useful to make evident subcellular damages or detoxification processes is discussed.
本文旨在描述 4-羟基-2E-壬烯醛的氧化应激产物在来自几种组织的真核细胞亚细胞器中的作用部位。还描述了 4-羟基-2E-壬烯醛衍生物的解毒机制。所有对亚细胞器有危险的化合物都是呼吸链的代谢物,它们可以产生氧化化合物的稳定产物,也是其他氧化反应链的中间体。最后,讨论了所描述的过程之间的平衡,以确定几种代谢链的相对氧化能力,这对明显的亚细胞损伤或解毒过程很有用。