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首页> 外文期刊>International Journal of Environmental Research and Public Health >UVA Photoirradiation of Oxygenated Benz[a]anthracene and 3-Methylcholanthene - Generation of Singlet Oxygen and Induction of Lipid Peroxidation
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UVA Photoirradiation of Oxygenated Benz[a]anthracene and 3-Methylcholanthene - Generation of Singlet Oxygen and Induction of Lipid Peroxidation

机译:氧化苯并[a]蒽和3-甲基胆蒽的UVA光辐射-单线态氧的产生和脂质过氧化的诱导

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Polycyclic aromatic hydrocarbons (PAHs) are widespread genotoxic environmental pollutants and potentially pose a health risk to humans. Although the biological and toxicological activities, including metabolism, mutagenicity, and carcinogenicity, of PAHs have been thoroughly studied, their phototoxicity and photo-induced biological activity have not been well examined. We have long been interested in phototoxicity of PAHs and their derivatives induced by irradiation with UV light. In this paper we report the photoirradiation of a series of oxygenated benz[a]anthracene (BA) and 3-methylcholanthene (3-MC) by UVA light in the presence of a lipid, methyl linoleate. The studied PAHs include 2-hydroxy-BA (2-OH-BA), 3-hydroxy-BA (3-OH-BA), 5-hydroxymethyl-BA (5-CH2OH-BA), 7-hydroxymethyl-BA (7-CH2OH-BA), 12-hydroxymethyl-BA (12-CH2OH-BA), 7-hydroxymethyl-12-methyl-BA (7-CH2OH-12-MBA), 5-formyl-BA (5-CHO-BA), BA 5,6-cis-dihydrodiol (BA 5,6-cis-diol), 1-hydroxy-3- methylcholanthene (1-OH-3-MC), 1-keto-3-methylcholanthene (1-keto-3-MC), and 3-MC 1,2-diol. The results indicate that upon photoirradiation by UVA at 7 and 21 J/cm2, respectively all these compounds induced lipid peroxidation and exhibited a relationship between the dose of the light and the level of lipid peroxidation induced. To determine whether or not photoirradiation of these compounds by UVA light produces ROS, an ESR spin-trap technique was employed to provide direct evidence. Photoirradiation of 3-keto-3-MC by UVA (at 389 nm) in the presence of 2,2,6,6-tetramethylpiperidine (TEMP), a specific probe for singlet oxygen, resulted in the formation of TEMPO, indicating that singlet oxygen was generated. These overall results suggest that UVA photoirradiation of oxygenated BA and 3-methylcholanthrene generates singlet oxygen, one of the reactive oxygen species (ROS), which induce lipid peroxidation.
机译:多环芳烃(PAH)是广泛的遗传毒性环境污染物,并可能对人类健康构成威胁。尽管已经对PAHs的生物学和毒理学活性(包括代谢,诱变和致癌性)进行了深入研究,但尚未对其光毒性和光诱导的生物学活性进行充分的研究。长期以来,我们一直对紫外线辐射引起的PAHs及其衍生物的光毒性感兴趣。在本文中,我们报告了在脂质亚油酸甲酯存在下,UVA光对一系列氧化苯并[a]蒽(BA)和3-甲基胆蒽(3-MC)的光辐射。研究的PAH包括2-羟基-BA(2-OH-BA),3-羟基-BA(3-OH-BA),5-羟基甲基-BA(5-CH2OH-BA),7-羟基甲基-BA(7 -CH2OH-BA),12-羟甲基-BA(12-CH2OH-BA),7-羟甲基-12-甲基-BA(7-CH2OH-12-MBA),5-甲酰基-BA(5-CHO-BA) ,BA 5,6-顺式二氢二醇(BA 5,6-顺式二醇),1-羟基-3-甲基胆蒽(1-OH-3-MC),1-酮-3-甲基胆碱(1-酮-3 -MC)和3-MC 1,2-二醇。结果表明,在分别以7 J / cm 2和21 J / cm2的UVA光照射后,所有这些化合物均诱导脂质过氧化,并表现出光剂量与诱导的脂质过氧化水平之间的关系。为了确定UVA光对这些化合物的光辐照是否产生ROS,采用了ESR自旋阱技术来提供直接证据。在2,2,6,6-四甲基哌啶(TEMP)(一种单线态氧的特异性探针)存在下,UVA(在389 nm)对3-keto-3-MC的光辐照导致TEMPO的形成,表明该单线态产生了氧气。这些总体结果表明,含氧的BA和3-甲基胆碱的UVA光辐射会产生单线态氧,这是一种活性氧(ROS),会引起脂质过氧化。

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