用于皮肤暴露于芳香异氰酸酯的拦截手套取样器的研制。

H. Harari, D. Bello, S. Woskie, C. Redlich
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引用次数: 10

摘要

目的皮肤是异氰酸酯类化学物质的重要暴露途径,并有助于全身致敏。评估皮肤暴露的方法目前有限,通常依赖于容易低估的去除(例如胶带条)技术。本研究的目的是:(i)开发并现场测试一种基于拦截的手部暴露采样器,以监测工作场所皮肤对异氰酸酯的潜在暴露;(ii)开发一种基于超高效液相色谱-紫外吸收-串联质谱(UHPLC-UV-MS/MS)的分析方法,用于分析手套样品;(3)与胶带剥皮取样法进行比较。方法对不同手套材料/织物、1-(9-蒽基甲基)哌嗪(MAP)衍生化剂浸渍方法、亚甲基二苯基二异氰酸酯(MDI)的吸收率、回收率和耐久性进行了实验室研究。使用后,将手套分成不同的空间区域(手指,手掌),并使用新开发的UHPLC-UV-MS/MS方法进行分析,该方法能够以高灵敏度区分和定量不同的MDI异构体。手套取样器的性能在使用六名工人的试点实地研究中得到进一步评估。结果成功建立了sa map浸渍薄棉手套取样器和UHPLC-UV-MS/MS检测MDI的方法。在随后的现场研究中,来自14对手套的384个样本确定了每只手的全轮班暴露范围为0.01至306µg 4,4'-MDI/工人。手套取样器测得的表面积调整MDI值(0.13-572ng MDI cm-2)明显高于胶带剥离法测得的值(约400倍)。结论建立了手套进样器和UHPLC-UV-MS/MS分析方法,可定量测定MDI皮肤暴露。新的拦截技术克服了测量异氰酸酯皮肤暴露的去除技术的固有局限性,可能在暴露监测和未来异氰酸酯健康风险的研究中有用。
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Development of an Interception Glove Sampler for Skin Exposures to Aromatic Isocyanates.
OBJECTIVES Skin is an important exposure route for isocyanate chemicals and contributes to systemic sensitization. Methods for assessing skin exposure are currently limited and generally rely upon removal (e.g. tape-strip) techniques prone to underestimation. The aim of this study is to (i) develop and field test an interception-based hand exposure sampler to monitor potential skin exposure to isocyanates in the workplace, (ii) to develop an analytical method based on ultra-high-performance liquid chromatography-UV absorbance-tandem mass spectrometry (UHPLC-UV-MS/MS) for analyzing glove samples; and (iii) compare it with tape-stripping skin sampling method. METHODS Laboratory investigations assessed different glove materials/fabrics, methods for impregnating with 1-(9-anthracenylmethyl)piperazine (MAP) derivatizing agent, methylene diphenyl diisocyanate (MDI) uptake and recovery, and durability. Following use, gloves were dissected into sections corresponding to different spatial regions (finger, palm) and analyzed using a newly developed UHPLC-UV-MS/MS method capable of differentiating and quantitating different MDI isomers with high sensitivity. Performance of the glove sampler was further assessed in a pilot field study using six workers. RESULTS A MAP-impregnated thin cotton glove sampler and UHPLC-UV-MS/MS analytical method for detecting MDI were successfully developed in laboratory studies. In subsequent field studies, a total of 384 samples from 14 glove pairs identified full-shift exposures ranged from 0.01 to 306 µg of 4,4'-MDI/worker for each hand. Surface area adjusted MDI values measured with the glove sampler (0.13-572ng MDI cm-2) were considerably higher (~400-fold) than values obtained with tape stripping. CONCLUSION A glove sampler and a novel UHPLC-UV-MS/MS analytical method were developed to quantitatively measure MDI skin exposure. The novel interception technique overcomes inherent limitations of removal techniques for measuring isocyanate skin exposure and may be useful in exposure surveillance and future research on isocyanate's health risks.
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