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外源和内源性丙二醛代谢的近期研究综述。

A review of recent studies on the metabolism of exogenous and endogenous malondialdehyde.

作者信息

Draper H H, Hadley M

机构信息

Department of Nutritional Sciences, College of Biological Science, University of Guelph, Ontario, Canada.

出版信息

Xenobiotica. 1990 Sep;20(9):901-7. doi: 10.3109/00498259009046905.

Abstract
  1. The generation of malondialdehyde (MDA), a mutagenic product of the oxidative decomposition of highly unsaturated fatty acids in vivo, is increased by exposure to certain environmental oxidants and xenobiotics. 2. This increase is reflected in enhanced excretion of several MDA derivatives in the urine. The main urinary metabolites of MDA have been identified as N-epsilon-(2-propenal)lysine and its N-alpha-acetyl ester. 3. Two minor metabolites have been identified as enaminals formed by reactions with the phospholipid bases serine and ethanolamine. A further MDA metabolite has been identified as a cyclized adduct with guanine. 4. These urinary compounds reflect the turnover of proteins, phospholipids and nucleic acids that have been modified by reactions with MDA in vivo. Monitoring of the urinary adduct with guanine may provide a practicable method of assessing the effect of xenobiotics and other factors on in vivo lipid peroxidation. 5. The proportion of total MDA in the diet, blood, urine and solid tissues that exists in the free state appears to be negligible. 6. Chronic oral administration of the enol Na salt of MDA to animals produced no significant pathology except for dose-dependent lesions of hepatic nuclei. Nuclear abnormalities in cultured rat skin fibroblasts were seen at intracellular concentrations as low as 10(-7) M.
摘要
  1. 丙二醛(MDA)是体内高度不饱和脂肪酸氧化分解产生的诱变产物,接触某些环境氧化剂和外源性物质会使其生成量增加。2. 这种增加反映在尿液中几种MDA衍生物排泄量的增加上。MDA的主要尿代谢产物已被鉴定为N-ε-(2-丙烯醛)赖氨酸及其N-α-乙酰酯。3. 两种次要代谢产物已被鉴定为由与磷脂碱基丝氨酸和乙醇胺反应形成的烯胺。另一种MDA代谢产物已被鉴定为与鸟嘌呤形成的环化加合物。4. 这些尿化合物反映了体内与MDA反应而被修饰的蛋白质、磷脂和核酸的周转情况。监测与鸟嘌呤形成的尿加合物可能提供一种切实可行的方法来评估外源性物质和其他因素对体内脂质过氧化的影响。5. 饮食、血液、尿液和固体组织中以游离状态存在的总MDA比例似乎可以忽略不计。6. 对动物长期口服MDA的烯醇钠盐,除了肝细胞核出现剂量依赖性病变外,未产生明显病理变化。在培养的大鼠皮肤成纤维细胞中,细胞内浓度低至10^(-7) M时就可观察到核异常。

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