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苯酚类代谢产物的过氧化物酶依赖性代谢及其在苯毒性和致癌性中的潜在作用。

Peroxidase-dependent metabolism of benzene's phenolic metabolites and its potential role in benzene toxicity and carcinogenicity.

作者信息

Smith M T, Yager J W, Steinmetz K L, Eastmond D A

机构信息

Department of Biomedical and Environmental Health Sciences, School of Public Health, University of California, Berkeley 94720.

出版信息

Environ Health Perspect. 1989 Jul;82:23-9. doi: 10.1289/ehp.898223.

Abstract

The metabolism of two of benzene's phenolic metabolites, phenol and hydroquinone, by peroxidase enzymes has been studied in detail. Studies employing horseradish peroxidase and human myeloperoxidase have shown that in the presence of hydrogen peroxide phenol is converted to 4,4'-diphenoquinone and other covalent binding metabolites, whereas hydroquinone is converted solely to 1,4-benzoquinone. Surprisingly, phenol stimulates the latter conversion rather than inhibiting it, an effect that may play a role in the in vivo myelotoxicity of benzene. Indeed, repeated coadministration of phenol and hydroquinone to B6C3F1 mice results in a dramatic and significant decrease in bone marrow cellularity similar to that observed following benzene exposure. A mechanism of benzene-induced myelotoxicity is therefore proposed in which the accumulation and interaction of phenol and hydroquinone in the bone marrow and the peroxidase-dependent formation of 1,4-benzoquinone are important components. This mechanism may also be responsible, at least in part, for benzene's genotoxic effects, as 1,4-benzoquinone has been shown to damage DNA and is shown here to induce multiple micronuclei in human lymphocytes. Secondary activation of benzene's phenol metabolites in the bone marrow may therefore play an important role in benzene's myelotoxic and carcinogenic effects.

摘要

过氧化物酶对苯的两种酚类代谢产物苯酚和对苯二酚的代谢过程已得到详细研究。使用辣根过氧化物酶和人髓过氧化物酶的研究表明,在过氧化氢存在的情况下,苯酚会转化为4,4'-二酚醌和其他共价结合代谢产物,而对苯二酚仅转化为1,4-苯醌。令人惊讶的是,苯酚会刺激后者的转化而不是抑制它,这种效应可能在苯的体内骨髓毒性中起作用。事实上,对B6C3F1小鼠重复联合给予苯酚和对苯二酚会导致骨髓细胞数量急剧且显著减少,类似于苯暴露后观察到的情况。因此,提出了一种苯诱导骨髓毒性的机制,其中苯酚和对苯二酚在骨髓中的积累和相互作用以及过氧化物酶依赖性形成1,4-苯醌是重要组成部分。这种机制可能至少部分地导致了苯的遗传毒性作用,因为1,4-苯醌已被证明会损伤DNA,并且在此处显示会在人淋巴细胞中诱导多个微核。因此,苯的酚类代谢产物在骨髓中的二次活化可能在苯的骨髓毒性和致癌作用中起重要作用。

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