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Replacing the Draize eye test: Impedance spectroscopy as a 3R method to discriminate between all GHS categories for eye irritation

机译:取代Draize眼睛测试:阻抗光谱学作为一个3R方法,以区分所有GHS类别的眼睛刺激

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Highly invasive animal based test procedures for risk assessment such as the Draize eye test are under increasing criticism due to poor transferability for the human organism and animal-welfare concerns. However, besides all efforts, the Draize eye test is still not completely replaced by alternative animal-free methods. To develop an in vitro test to identify all categories of eye irritation, we combined organotypic cornea models based on primary human cells with an electrical readout system that measures the impedance of the test models. First, we showed that employing a primary human cornea epithelial cell based model is advantageous in native marker expression to the primary human epidermal keratinocytes derived models. Secondly, by employing a non-destructive measuring system based on impedance spectroscopy, we could increase the sensitivity of the test system. Thereby, all globally harmonized systems categories of eye irritation could be identified by repeated measurements over a period of 7 days. Based on a novel prediction model we achieved an accuracy of 78% with a reproducibility of 88.9% to determine all three categories of eye irritation in one single test. This could pave the way according to the 3R principle to replace the Draize eye test.
机译:由于人体生物体和动物福利关注的可转移性,高度侵入性动物的风险评估试验程序,如Draize Eye测试越来越多地批评。然而,除了所有的努力外,Draize眼睛测试仍然没有完全取代替代的无动物方法。为了开发体外测试以识别所有类别的眼睛刺激,我们将基于原代人体细胞的有机型角膜模型与电读出系统组合,测量测试模型的阻抗。首先,我们表明,采用初级人角上皮细胞基础的模型在天然标志物表达中是有利的,对原发性人表皮角质细胞衍生的模型。其次,通过采用基于阻抗光谱的非破坏性测量系统,我们可以提高测试系统的灵敏度。因此,可以通过7天内重复测量来识别所有全局协调的眼睛刺激类别。基于一个新颖的预测模型,我们的准确性为78%,再现性为88.9%,以确定一个单一测试中的所有三类眼睛刺激。这可以根据3R原理铺平道路以取代绘制眼睛测试。

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