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Evaluation of Furfuryl Alcohol Sensitization Potential Following Dermal and Pulmonary Exposure: Enhancement of Airway Responsiveness

机译:皮肤和肺部接触后糠醇增敏潜力的评估:增强气道反应性。

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摘要

Furfuryl alcohol is considered by the U.S. Environmental Protection Agency to be a high volume production chemical, with over 1 million pounds produced annually. Due to its high production volume and its numerous industrial and consumer uses, there is considerable potential for work-related exposure, as well as exposure to the general population, through pulmonary, oral, and dermal routes of exposure. Human exposure data report a high incidence of asthma in foundry mold workers exposed to furan resins, suggesting potential immunologic effects. Although furfuryl alcohol was nominated and evaluated for its carcinogenic potential by the National Toxicology Program, studies evaluating its immunotoxicity are lacking. The studies presented here evaluated the immunotoxic potential of furfuryl alcohol following exposure by the dermal and pulmonary routes using a murine model. When tested in a combined irritancy local lymph node assay, furfuryl alcohol was identified to be an irritant and mild sensitizer (EC3 = 25.6%). Pulmonary exposure to 2% furfuryl alcohol resulted in enhanced airway hyperreactivity, eosinophilic infiltration into the lungs, and enhanced cytokine production (IL-4, IL-5, and interferon-γ) by ex vivo stimulated lung-associated draining lymphoid cells. Airway hyperreactivity and eosinophilic lung infiltration were augmented by prior dermal exposure to furfuryl alcohol. These results suggest that furfuryl alcohol may play a role in the development of allergic airway disease and encourage the need for additional investigation.
机译:糠醇被美国环境保护署认为是一种高产量的化学品,每年生产超过一百万磅。由于其高产量以及众多的工业和消费者用途,通过肺,口腔和皮肤接触途径,与工作相关的接触以及与普通人群接触的潜力很大。人体暴露数据表明,暴露于呋喃树脂中的铸造模具工人中哮喘的发病率很高,表明具有潜在的免疫学作用。尽管糠醇是由美国国家毒理学计划提名并评估其致癌潜力的,但仍缺乏评估其免疫毒性的研究。此处进行的研究使用鼠模型评估了通过皮肤和肺部途径暴露后糠醇的免疫毒性潜力。当在联合刺激性局部淋巴结试验中进行测试时,糠醇被鉴定为刺激性和轻度敏化剂(EC3 = 25.6%)。肺暴露于2%糠醇会增强气道高反应性,嗜酸性粒细胞向肺内的浸润,并通过离体刺激的与肺相关的引流性淋巴样细胞而增强细胞因子的产生(IL-4,IL-5和干扰素-γ)。事先将皮肤暴露于糠醇会增加呼吸道反应性和嗜酸性肺浸润。这些结果表明,糠醇可能在过敏性气道疾病的发展中起作用,并鼓励进行进一步的研究。

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