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两类合成两亲性化合物——酚类和胺N-氧化物的细胞保护和抗氧化活性。

Cell-protective and antioxidant activity of two groups of synthetic amphiphilic compounds--phenolics and amine N-oxides.

作者信息

Krasowska A, Sigler K

机构信息

Faculty of Biotechnology, Wrocław University, 51-148 Wrocłlaw, Poland.

出版信息

Folia Microbiol (Praha). 2007;52(6):585-92. doi: 10.1007/BF02932187.

Abstract

Two classes of newly synthesized amphiphilic compounds, phenolic antioxidants ("phenolics") and N-oxides exert in vivo antioxidant effects on live S. cerevisiae cells. Both groups have low toxicity, phenolics being more toxic than N-oxides and compounds with a longer alkyl chain having higher toxicity than those with a shorter alkyl chain. Phenolic antioxidants protect yeast cells exposed to the superoxide producer paraquat and peroxyl generator tert-butylhydroperoxide better than N-oxides at 3-fold higher concentration. Both types of antioxidants enhance the survival of pro-oxidant-exposed cells of S. cerevisiae mutants deficient in cytosolic and/or mitochondrial superoxide dismutase and could be good compounds which mimic the role of superoxide dismutases. The results of measurement of antioxidant activity in an in vitro chemiluminescence test differ from the results obtained in vivo with S. cerevisiae superoxide dismutase mutants. In contrast to their action on live cells, phenolics are less effective than N-oxides in preventing lipid peroxidation of an emulsion of lipids isolated from S. cerevisiae membranes.

摘要

两类新合成的两亲性化合物,即酚类抗氧化剂(“酚类物质”)和氮氧化物,对活的酿酒酵母细胞具有体内抗氧化作用。这两类化合物毒性都很低,酚类比氮氧化物毒性更大,且烷基链较长的化合物比烷基链较短的化合物毒性更高。在浓度高出3倍的情况下,酚类抗氧化剂比氮氧化物能更好地保护暴露于超氧化物产生剂百草枯和过氧自由基产生剂叔丁基过氧化氢的酵母细胞。这两类抗氧化剂都能提高缺乏胞质和/或线粒体超氧化物歧化酶的酿酒酵母突变体在暴露于促氧化剂时的存活率,并且可能是模拟超氧化物歧化酶作用的良好化合物。体外化学发光试验中抗氧化活性的测量结果与在酿酒酵母超氧化物歧化酶突变体体内获得的结果不同。与它们对活细胞的作用相反,在防止从酿酒酵母膜分离的脂质乳液的脂质过氧化方面,酚类比氮氧化物效果更差。

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