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In vitro methods for hazard assessment of industrial chemicals – opportunities and challenges

机译:工业化学品危害评估的体外方法–机遇与挑战

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Allergic contact dermatitis (ACD) is a delayed-type hypersensitivity immune reaction mediated by T-lymphocytes as a result of repeated exposure of an allergen primarily on skin. ACD accounts for up to 95% of occupational skin diseases, with epoxy resins implicated as one of the most common causes of ACD. Efficient high-throughput in vitro screening for accurate identification of compounds and materials that may pose hazardous risks in the workplace is crucial. At present, the murine local lymph node assay is the ‘method of choice’ for predicting the sensitizing potency of contact allergens. As the 3Rs principles of reduction, refinement, and replacement in animal testing has gained political and economic momentum, several in vitro screening methods have been developed for identifying potential contact allergens. To date, these latter methods have been utilized primarily to assess the skin sensitizing potential of the chemical components of cosmetic products with scant research attention as to the applicability of these methods to industrial chemicals, particularly epoxy resins. Herein we review the currently utilized in vitro methods and identify the knowledge gaps with regard to assessing the generalizability of in vitro screening methods for assessing the skin sensitizing potential of industrial chemicals.
机译:过敏性接触性皮炎(ACD)是由T淋巴细胞介导的迟发型超敏性免疫反应,主要是由于反复暴露于皮肤上的变应原。 ACD占职业性皮肤病的95%,其中环氧树脂是ACD的最常见原因之一。有效的高通量体外筛选对于准确鉴定可能在工作场所造成危险的化合物和材料至关重要。目前,鼠类局部淋巴结测定法是预测接触变应原致敏能力的“选择方法”。随着动物试验中3R减少,提纯和替换的原则获得政治和经济动力,已开发出几种体外筛选方法来鉴定潜在的接触性过敏原。迄今为止,后一种方法主要用于评估化妆品中化学成分的皮肤增敏潜力,而对于这些方法对工业化学品,尤其是环氧树脂的适用性研究很少。本文中,我们回顾了当前使用的体外方法,并确定了有关评估体外筛选方法的普遍性以评估工业化学品的皮肤致敏性的知识差距。

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