首页> 外文期刊>Toxicology in vitro: an international journal published in association with BIBRA >Chemical reactivity measurements: potential for characterization of respiratory chemical allergens.
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Chemical reactivity measurements: potential for characterization of respiratory chemical allergens.

机译:化学反应性测量:表征呼吸化学过敏原的潜力。

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摘要

Allergic diseases of the skin and respiratory tract resulting from exposure to low molecular weight chemicals remain important issues for consumer product development and occupational/environmental health. Widespread opportunities for exposure to chemical allergens require that there are available effective methods for hazard identification and risk assessment. In the search for new tools for hazard identification/characterization there has been interest in developing alternative methods that will reduce, refine or replace the need for animals. One approach that shows promise is based on the measurement of the peptide reactivity of chemicals; the potential to form stable associations with protein/peptide being a key requirement for the induction of sensitization. Recent investigations using these systems have focused primarily on skin sensitizing chemicals. However, there is interest in the possibility of exploiting these same experimental approaches to distinguish between different forms of chemical allergens - as individual materials are primarily associated with one or the other form of sensitization in humans. These investigations may also provide insight into why chemical sensitizers can differ in the form of allergic disease they will preferentially induce. These opportunities are surveyed here against a background of the immunobiology of allergic sensitization and current state-of-the-art approaches to measurement of peptide/protein reactivity.
机译:暴露于低分子量化学物质导致的皮肤和呼吸道过敏性疾病仍然是消费品开发和职业/环境健康的重要问题。暴露于化学过敏原的广泛机会要求有可用的有效方法进行危害识别和风险评估。在寻找用于危害识别/表征的新工具时,人们感兴趣的是开发替代方法以减少,改善或替代对动物的需求。一种显示出希望的方法是基于对化学药品的肽反应性的测量。与蛋白质/肽形成稳定缔合的潜力是诱导致敏的关键条件。使用这些系统的最新研究主要集中在皮肤致敏化学品上。然而,人们有兴趣利用这些相同的实验方法来区分不同形式的化学过敏原,因为单个物质主要与人类中一种或另一种敏化有关。这些研究还可以提供洞悉化学敏化剂为何会优先诱发的过敏性疾病形式不同的见解。这些机会是在变态反应致敏的免疫生物学和目前用于测量肽/蛋白质反应性的最新技术的背景下进行调查的。

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