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Changes of biomarkers with oral exposure to benzo(a)pyrene, phenanthrene and pyrene in rats

机译:口服苯并(a)py,菲和pyr的生物标志物的变化

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摘要

Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous environmental contaminants present in air and food. Among PAHs, benzo(a)pyrene(BaP), phenanthrene (PH) and pyrene (PY) are considered to be important for their toxicity or abundance. To investigate the changes of biomarkers after PAH exposure, rats were treated with BaP (150 µg/kg) alone or with PH (4,300 µg/kg) and PY (2,700 µg/kg) (BPP group) by oral gavage once per day for 30 days. 7-ethoxyresorufin-O-deethylase activity in liver microsomal fraction was increased in only BaP groups. The highest concentration (34.5 ng/g) of BaP, was found in muscle of rats treated with BaP alone at 20 days of treatment; it was 23.6 ng/g in BPP treated rats at 30 days of treatment. The highest PH concentration was 47.1 ng/g in muscle and 118.8 ng/g in fat, and for PY it was 29.7 ng/g in muscle and 219.9 ng/g in fat, in BPP groups. In urine, 114-161 ng/ml 3-OH-PH was found, while PH was 41-69 ng/ml during treatment. 201-263 ng/ml 1-OH-PY was found, while PH was 9-17 ng/ml in urine. The level of PY, PH and their metabolites in urine was rapidly decreased after withdrawal of treatment. This study suggest that 1-OH-PY in urine is a sensitive biomarker for PAHs; it was the most highly detected marker among the three PAHs and their metabolites evaluated during the exposure period and for 14 days after withdrawal.
机译:多环芳烃(PAHs)是空气和食物中普遍存在的环境污染物。在多环芳烃中,苯并(a)((BaP),菲(PH)和pyr(PY)被认为对它们的毒性或丰度很重要。为了研究暴露于PAH后的生物标志物的变化,每天分别通过口服管饲法对大鼠分别用BaP(150μg/ kg)或PH(4,300μg/ kg)和PY(2,700μg/ kg)(BPP组)处理30天。仅BaP组的肝脏微粒体级分中的7-乙氧基间苯二酚-O-脱乙基酶活性增加。在治疗20天时,仅用BaP治疗的大鼠的肌肉中发现BaP的最高浓度(34.5 ng / g)。在治疗30天时,BPP处理的大鼠为23.6 ng / g。在BPP组中,肌肉的最高PH浓度为47.1 ng / g,脂肪为118.8 ng / g,而PY的最高PH浓度为肌肉29.7 ng / g和219.9 ng / g。尿液中发现3-OH-PH为114-161 ng / ml,治疗期间PH为41-69 ng / ml。发现尿液中的2-OH-PY为201-263 ng / ml,而尿液中的PH为9-17 ng / ml。停药后尿液中PY,PH及其代谢物的含量迅速降低。这项研究表明,尿液中的1-OH-PY是PAHs的敏感生物标志物。它是在暴露期间和停药后14天评估的三种PAH及其代谢物中检测到最高的标志物。

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