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Perspectives on Non-Animal Alternatives for Assessing Sensitization Potential in Allergic Contact Dermatitis

机译:评估过敏性接触性皮炎致敏性的非动物替代方法的观点

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Skin sensitization remains a major environmental and occupational health hazard. Animal models have been used as the gold standard method of choice for estimating chemical sensitization potential. However, a growing international drive and consensus for minimizing animal usage have prompted the development of in vitro methods to assess chemical sensitivity. In this paper, we examine existing approaches including in silico models, cell and tissue based assays for distinguishing between sensitizers andirritants. The in silico approaches that have been discussed include Quantitative Structure Activity Relationships (QSAR) and QSAR based expert models that correlate chemical molecular structure with biological activity and mechanism based read-across models that incorporate compound electrophilicity. The cell and tissue based assays rely on an assortment of mono and co-culture cell systems in conjunction with 3D skin models. Given the complexity of allergen induced immune responses, and the limited ability of existing systems to capture the entire gamut of cellular and molecular events associated with these responses, we also introduce a microfabricated platform that can capture all the key steps involved in allergic contact sensitivity. Finally, wedescribe the development of an integrated testing strategy comprised of two or three tier systems for evaluating sensitization potential of chemicals.
机译:皮肤过敏仍然是主要的环境和职业健康危害。动物模型已用作估计化学致敏潜力的金标准选择方法。然而,国际上越来越多的驱动力和减少动物使用的共识促使人们开发了体外方法来评估化学敏感性。在本文中,我们检查了现有的方法,包括计算机模型,基于细胞和组织的测定法,用于区分敏化剂和刺激剂。已讨论的计算机模拟方法包括定量结构活性关系(QSAR)和基于QSAR的专家模型,该模型将化学分子结构与生物学活性相关联,并且基于机理的跨模型读取了化合物的亲电性。基于细胞和组织的分析方法依赖于各种单细胞和共培养细胞系统以及3D皮肤模型。考虑到变应原诱导的免疫反应的复杂性,以及现有系统捕获与这些反应相关的细胞和分子事件的整个范围的能力有限,我们还介绍了一种微型平台,可以捕获涉及过敏性接触敏感性的所有关键步骤。最后,我们描述了一种综合测试策略的开发,该策略由两层或三层系统组成,用于评估化学品的致敏性。

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