首页> 外文期刊>International archives of occupational and environmental health: Internationales Archiv fur Arbeits- und Umweltmedizin >Biological monitoring of occupational exposure to N,N-dimethylformamide--the effects of co-exposure to toluene or dermal exposure.
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Biological monitoring of occupational exposure to N,N-dimethylformamide--the effects of co-exposure to toluene or dermal exposure.

机译:N,N-二甲基甲酰胺职业暴露的生物监测-甲苯或皮肤暴露于共同暴露的影响。

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OBJECTIVES: The objective of this study is to assess the exposure and intake dose of N,N-dimethylformamide (DMF) and the correlation between them, according to the type of exposure for the workers in the DMF industry. METHODS: We monitored 345 workers occupationally exposed to DMF, from 15 workshops in the synthetic fiber, fiber coating, synthetic leather and paint manufacturing industries. Ambient monitoring was carried out with personal samplers to monitor the external exposure. Biological monitoring was done to determine the internal dose by analyzing N-methylformamide (NMF) in end-shift urine. Work procedure and exposure type of each DMF workshop was carefully surveyed, to classify workers by exposure type according to work details. Workers were classified into three groups (Group A: continuous and direct exposure through inhalation and skin; Group B: intermittent and short-term exposure through inhalation and skin; Group C: continuous and indirect exposure mostly through inhalation). RESULTS: Geometric mean of DMF concentration in air was 2.62 (GSD 5.30) ppm and that of NMF in urine was 14.50 (GSD 3.89) mg/l. In the case of continuous absorption through inhalation and dermal exposure (Group A), the value of NMF in urine corresponding to 10 ppm of DMF was 45.3 mg/l (r = 0.524, n = 178), 39.1 mg/g creatinine (r = 0.424), while it was 37.7 mg/l (r = 0.788, n = 37), 24.2 mg/g creatinine (r = 0.743) in the case of absorption mostly through inhalation (Group C). Creatinine correction reduced the correlation between two parameters. CONCLUSION: The NMF in urine corresponding to 10 ppm DMF, of the dermal and inhalation exposure group was 39.1 mg/g creatinine (r = 0.424, n = 178), while that of the inhalation exposure-only group was 24.2 mg/g creatinine (r = 0.743, n = 37). Co-exposure with toluene reduced the NMF excretion in urine.
机译:目的:本研究的目的是根据DMF行业工人的接触类型,评估N,N-二甲基甲酰胺(DMF)的接触和摄入剂量以及它们之间的相关性。方法:我们监测了来自合成纤维,纤维涂料,合成皮革和油漆制造行业的15个车间的345名职业暴露于DMF的工人。用个人采样器进行环境监测以监测外部暴露。通过分析尿样中的N-甲基甲酰胺(NMF),进行了生物监测以确定内部剂量。仔细调查了每个DMF车间的工作程序和暴露类型,以根据工作细节按暴露类型对工人进行分类。工人分为三组(A组:通过吸入和皮肤连续和直接暴露; B组:通过吸入和皮肤间歇性和短期暴露; C组:主要通过吸入进行连续和间接暴露)。结果:空气中DMF浓度的几何平均值为2.62(GSD 5.30)ppm,尿中NMF的几何平均值为14.50(GSD 3.89)mg / l。在通过吸入和皮肤暴露持续吸收的情况下(A组),尿液中的NMF值对应于10 ppm DMF,分别为45.3 mg / l(r = 0.524,n = 178),39.1 mg / g肌酐(r = 0.424),而为37.7 mg / l(r = 0.788,n = 37),而主要通过吸入吸收的情况下,肌酐为24.2 mg / g(r = 0.743)(C组)。肌酐校正减少了两个参数之间的相关性。结论:皮肤和吸入暴露组的尿中NMF对应于10 ppm DMF,肌酐为39.1 mg / g肌酐(r = 0.424,n = 178),而仅吸入暴露组的NMF为24.2 mg / g肌酐。 (r = 0.743,n = 37)。与甲苯共同暴露会减少尿液中NMF的排泄。

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