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在受污染建筑物中工作的人员体内多氯联苯消除的毒物动力学模型的建立与验证

Development and verification of a toxicokinetic model of polychlorinated biphenyl elimination in persons working in a contaminated building.

作者信息

Broding Horst Christoph, Schettgen Thomas, Göen Thomas, Angerer Jürgen, Drexler Hans

机构信息

Institute and Outpatient Clinic of Occupational-, Social and Environmental Medicine, Friedrich-Alexander-Universität Erlangen-Nuremberg, Schillerstrasse 25/29, 91054 Erlangen, Germany.

出版信息

Chemosphere. 2007 Jul;68(8):1427-34. doi: 10.1016/j.chemosphere.2007.04.014. Epub 2007 May 16.

DOI:10.1016/j.chemosphere.2007.04.014
PMID:17509643
Abstract

BACKGROUND

Polychlorinated biphenyls are toxic and slowly degrading substances that have been in widespread industrial use in the 1960s and 1970s. Despite a worldwide reduction, environmental exposure remains an issue; the assessment of an individual's level of exposure at a given time in retrospect requires valid toxicokinetic modeling of the different PCB congeners.

OBJECTIVES

To develop and verify a toxicokinetic model of the in vivo-degradation of PCB 28 and 52 in adult humans.

METHODS

The plasma concentrations of PCB congeners were measured in 583 persons working in a contaminated building for an average of 14.7+/-9.6 years. The values were adapted to a simple pharmacokinetic model (yt = y0 x (1 - e(-kt))); the steady state concentration y0 was estimated based on the median values of persons working exposed more than 10 years.

RESULTS

The steady state concentration of PCB 28 was 0.10 microg/l, that of PCB 52 0.02 microg/l. The half-life of the congeners was estimated based on a logarithmic regression analysis according to the model mentioned above; it was 2.18 (95% CI: 1.91-2.54) years for PCB 28 and 3.95 (95% CI: 3.55-4.45) years for PCB 52, respectively. Stepwise elimination of persons with very long employment duration did not reduce the estimated half-life.

CONCLUSIONS

The estimated half-life is higher than previously published data especially for PCB 52. Possible reasons and implications of this finding are discussed.

摘要

背景

多氯联苯是有毒且降解缓慢的物质,在20世纪60年代和70年代曾广泛应用于工业。尽管全球范围内其使用量有所减少,但环境暴露仍是一个问题;回顾性评估个体在特定时间的暴露水平需要对不同多氯联苯同系物进行有效的毒物动力学建模。

目的

建立并验证成年人体内多氯联苯28和52体内降解的毒物动力学模型。

方法

测量了583名在受污染建筑物中工作平均14.7±9.6年的人员的血浆中多氯联苯同系物浓度。将这些值适配到一个简单的药代动力学模型(yt = y0 x (1 - e(-kt)));基于工作超过10年的人员的中位数估计稳态浓度y0。

结果

多氯联苯28的稳态浓度为0.10微克/升,多氯联苯52的稳态浓度为0.02微克/升。根据上述模型通过对数回归分析估计同系物的半衰期;多氯联苯28的半衰期为2.18(95%置信区间:1.91 - 2.54)年,多氯联苯52的半衰期为3.95(95%置信区间:3.55 - 4.45)年。逐步排除工作年限极长的人员并没有降低估计的半衰期。

结论

估计的半衰期高于先前发表的数据,尤其是对于多氯联苯52。讨论了这一发现的可能原因及影响。

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