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Benzo(a)pyrene-albumin adducts in humans exposed to polycyclic aromatic hydrocarbons in an industrial area of Poland.

机译:暴露于波兰工业区中多环芳烃的人体苯并(a)py-白蛋白加合物。

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摘要

OBJECTIVES: The interaction of benzo(a)pyrene with serum albumin was measured in an attempt to identify the actual exposure and to evaluate albumin adduct measurements as biomarkers for exposure monitoring. METHODS: Benzo(a)pyrene-diol-epoxide (BPDE)-albumin adducts were measured by competitive enzyme linked immunosorbent assay (ELISA) in plasma of coke oven plant workers from three plants and from people living in a highly industrialised area of Silesia in Poland. Due to the high air concentrations of polycyclic aromatic hydrocarbons (PAHs) in this area, a control group was selected from a rural non-industrialised area in Poland. Breathing zone air measurements of PAHs were collected from some of the participants. RESULTS: Coke oven plant workers and non-occupationally exposed people had similar concentrations of albumin adducts whereas the rural controls were significantly lower (2.74 fmol adducts/microgram albumin (SEM 0.124)). The mean concentration of BPDE-albumin adduct in plasma of both the occupational and the environmental groups were significantly higher in the summer samples (4.34 fmol adducts/microgram albumin (SEM 0.335) and 4.55 fmol adducts/microgram albumin (SEM 0.296), respectively) than in the winter samples (3.06 fmol adducts/microgram albumin (SEM 0.187) and 3.04 fmol adducts/microgram albumin (SEM 0.184), respectively) even though the air measurements showed higher concentrations of PAHs in the winter. The statistical analysis did not show any effects of air exposures on concentrations of BPDE-albumin adduct. CONCLUSIONS: A multiple regression analysis of the measured concentrations of BPDE-albumin adducts for all the groups, during both seasons, indicates that occupational exposures do not contribute significantly to the formation of adducts. In general, the concentrations of albumin adducts found vary within relatively small limits for the two seasons and between the various groups of participants. No extreme differences were found.
机译:目的:测量苯并(a)with与血清白蛋白的相互作用,以试图确定实际暴露量并评估白蛋白加合物测量值作为监测暴露的生物标志物。方法:采用竞争性酶联免疫吸附法(ELISA)在三家工厂和西里西亚高度工业化地区的居民的焦炉工厂工人血浆中,通过竞争性酶联免疫吸附法(ELISA)测定了苯并(a)py-环氧-二醇(BPDE)-白蛋白加合物。波兰。由于该地区空气中的多环芳烃(PAHs)浓度较高,因此从波兰的一个农村非工业化地区中选择了一个对照组。从一些参与者那里收集了PAHs的呼吸区空气测量值。结果:炼焦炉厂工人和非职业暴露人员的白蛋白加合物浓度相似,而农村地区的对照明显较低(2.74 fmol加合物/微克白蛋白(SEM 0.124))。在夏季样本中,职业组和环境组血浆中BPDE-白蛋白加合物的平均浓度均显着较高(分别为4.34 fmol加合物/微克白蛋白(SEM 0.335)和4.55 fmol加合物/微克白蛋白(SEM 0.296))尽管空气测量结果显示冬季PAHs浓度较高,但仍比冬季样品(3.06 fmol加合物/微克白蛋白(SEM 0.187)和3.04 fmol加合物/微克白蛋白(SEM 0.184)高。统计分析未显示暴露于空气对BPDE-白蛋白加合物的浓度有任何影响。结论:在两个季节中,所有组的BPDE-白蛋白加合物的测定浓度的多元回归分析表明,职业暴露对加合物的形成没有显着影响。通常,发现的两个季节中以及各组参与者之间的白蛋白加合物的浓度在相对较小的范围内变化。没有发现极端差异。

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