Biological Signatures (Proteomics, Metabolomics and Genotoxicity) Associated With Occupational Exposure to PAH Mixtures and Relation With Exposure Biomarkers: Support for the Derivation of Biological Limit Values
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 发起方
- 入组人数
- 100
- 试验地点
- 2
- 主要终点
- Frequency of micronuclei measured due to exposure to PAHs
研究概览
简要总结
This research project aims at better understanding the early biological effects resulting from occupational exposure to complex Polycyclic Aromatic Hydrocarbon (PAH) mixtures.
Current biomarkers used as part of biomonitoring campaigns are biomarkers of exposure, not numerous and poorly related to health effects.
The aim of this study is thus to improve our understanding of biological consequences of such exposures, both in terms of proteins deregulation, metabolism deregulation and genotoxicity.
详细描述
PAHs are ubiquitous pollutants inducing several diseases, among which cancer is the most significant endpoint, with increased incidences of lung, skin, and bladder cancers. PAHs induce genotoxic effects (sister chromatids exchange, micronuclei, DNA damage) but require metabolic activation in humans as indirect-acting carcinogens. Thus, the knowledge of metabolic pathways involved following PAH exposure is critical for understanding and preventing cancer risks. Besides, exposure to PAHs is assumed to induce other adverse health effects (diabetes, inflammation, infertility, cardiovascular disease). Unfortunately, early disease-related biomarkers are still largely unknown and our comprehension about the mechanisms involved is still limited. The rare existing biological limit values either refer to not carcinogenic PAH (pyrene) or detoxification pathways (3-OHBaP for BaP), although new biomarkers reflecting the genotoxic pathway of BaP (TetraolBaP) are now available. There is thus a need for identifying more relevant biomarkers of exposure / effect, and for a better understanding of the biological consequences resulting from PAH exposures as well as the associated metabolic pathways involved.
The objectives of the project are :
- To better understand and characterize molecular, metabolic and genotoxic impacts resulting from exposure to PAHs and to link such impacts with biological levels of various PAH metabolites,
- To study the influence of BaP metabolism (genotoxic versus detoxication pathway) on the differential expression of metabolites / proteins and on genotoxicity endpoints in order to get relevant data for deriving new biological limit values,
- To elucidate the associations between omics deregulations due to PAH exposures and activated metabolic pathways, in order to define candidate effect biomarkers for human biomonitoring.
The originalities of the project are the following. First, this is a human study performed in real occupational settings on workers exposed to representative PAH mixtures. It is a multidisciplinary approach simultaneously combining up-to-date biomonitoring, omics and cytogenetics analyses, that will give insight into a comprehensive view of metabolic reactions and protein expressions following occupational exposure to PAH mixtures, and allow the identification of the biological processes involved. Carcinogenic BaP metabolites (Tetraol-BaP and 3-OHBaP) will be simultaneously analyzed in order to compare the two main metabolic pathways of BaP.
The main steps of the projects will be :
研究设计
- 研究类型
- Interventional
- 分配方式
- Na
- 干预模型
- Single Group
- 主要目的
- Prevention
- 盲法
- None
入排标准
- 年龄范围
- 18 Years 至 —(Adult, Older Adult)
- 性别
- Male
- 接受健康志愿者
- 是
入选标准
- •Subjects ages 18 years or more
- •Subjects occupationally exposed to PAHs since more than 3 months
- •Having signed the informed consent
- •recruited by the occupational health service
排除标准
- •Obesity (BMI>30)
- •Subjects suffering cancers or metabolic diseases (diabetes, dyslipidemia, amino-acid diseases, renal or hepatic impairment) at the onset of the study.
- •Subjects taking medications related to the above diseases at the onset of the study.
结局指标
主要结局
Frequency of micronuclei measured due to exposure to PAHs
时间窗: up to 6 months between both periods of study
Frequency of cells containing micronuclei in period of exposure versus after holidays
Deregulation of blood proteins expression due to exposure to PAHs
时间窗: up to 6 months between both periods of study
Number of proteins up or down regulated in period of exposure versus after holidays
Deregulation of blood metabolites expression due to exposure to PAHs
时间窗: up to 6 months between both periods of study
Number of metabolites up or down regulated in period of exposure versus after holidays
次要结局
未报告次要终点
