首页> 外文期刊>Regulatory Toxicology and Pharmacology: RTP >Eye irritation potential: usefulness of the HET-CAM under the Globally Harmonized System of Classification and Labeling of Chemicals (GHS).
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Eye irritation potential: usefulness of the HET-CAM under the Globally Harmonized System of Classification and Labeling of Chemicals (GHS).

机译:眼睛刺激的可能性:HET-CAM在全球化学品统一分类和标签制度(GHS)下的有用性。

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摘要

Extensive research has been conducted over the past decades to develop alternatives to the rabbit eye irritation test (Draize test) used in a regulatory context to assess eye irritation potentials. Although no single in vitro test has emerged as being completely acceptable for full replacement, various tests are considered to be suitable and are regularly used to assess certain aspects. Amongst these, the Hen's Egg Test Chorioallantoic Membrane (HET-CAM) has gained regulatory acceptance in various countries to classify severe eye irritants. In this retrospective study, historical eye irritation data (in vivo and in vitro) from 137 samples (approx. 75% non-irritants; 25% (severe) irritants) tested both in the HET-CAM and Draize eye test was compared with regard to the predicted eye irritation classes under the GHS and the traditional EU classification system (DSD).The overall concordance was in the range of 80-90%. A high specificity (96-98%, depending on the classification system and the chosen discrimination) but rather low sensitivity (48-65%) was observed. The study indicates that HET-CAM results are useful as part of weight-of-evidence assessments or in tiered approaches to assess eye irritation potentials rather than as stand-alone classification method.
机译:在过去的几十年中,已经进行了广泛的研究,以开发在监管环境下用于评估眼刺激潜力的兔眼刺激试验(Draize试验)的替代方法。尽管没有一个单独的体外测试可以完全替代完全被接受,但各种测试被认为是合适的,并经常用于评估某些方面。其中,母鸡卵测试绒毛膜尿囊膜(HET-CAM)已在各个国家获得监管部门的认可,以对严重的眼刺激物进行分类。在这项回顾性研究中,比较了在HET-CAM和Draize眼试验中测试的137个样品(体内和体外)的历史眼刺激数据(体内和体外)(大约75%的非刺激性; 25%(严重)的刺激性)。根据GHS和传统的欧盟分类系统(DSD)预测的眼睛刺激性等级。总体一致性在80-90%的范围内。观察到高特异性(96-98%,取决于分类系统和选择的区分度),但灵敏度较低(48-65%)。研究表明,HET-CAM结果可作为证据权重评估的一部分或用于评估眼睛刺激潜力的分层方法,而不是作为独立的分类方法。

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