Suppr超能文献

建立和评估一种内部的 3D 重建人角膜样上皮(RhCE)作为潜在眼危害液体化学品识别的筛选工具。

Establishment and performance assessment of an in-house 3D Reconstructed Human Cornea-Like Epithelium (RhCE) as a screening tool for the identification of liquid chemicals with potential eye hazard.

机构信息

Ashland, Global Skin Research Center, Advanced Skin Research & Bioengineering Dept., Sophia Antipolis, France.

Ashland, Global Skin Research Center, Advanced Skin Research & Bioengineering Dept., Sophia Antipolis, France.

出版信息

Toxicol In Vitro. 2019 Dec;61:104604. doi: 10.1016/j.tiv.2019.104604. Epub 2019 Jul 19.

Abstract

The objective of this project was to develop an in-house 3D Reconstructed Human Cornea-Like Epithelium (RhCE) to be used as a screening tool in early stages of product development. This study reports the establishment of the experimental procedure and the performance assessment of the model to discriminate liquid chemicals classified as causing serious eye damage/irritation (UN-GHS Category 1/2) from liquid chemicals not requiring such hazard classification (UN-GHS No Category). Histological examination of this ocular equivalent model, based on Normal Human Keratinocytes (NHK) cultured in a chemically defined medium, revealed a stratified and well-organized tissue construct. Moreover, barrier robustness and functionality were demonstrated by the effective time-50 (ET) of Triton X-100 measurement. The prediction model is based on cytotoxicity assessment following a test chemical exposure. When the mean tissue viability was over 60%, the chemical was defined as No Category; otherwise, it was classified as Category 1/2. In accordance with the applicable OECD guidance document (ENV/JM/MONO (2015)23), the performance of the model for eye hazard identification was evaluated with the minimum list of reference chemicals. As a result, the method scored 84.4% Accuracy, 70.8% Specificity, 100% Sensitivity and 93.3% for Concordance, demonstrating prediction performances close to those of Validated Reference Methods that are commonly used for regulatory purposes. Finally, these results suggest that this in-house RhCE based test method is a qualitative and accurate screening tool for eye hazard identification of liquid chemicals.

摘要

本项目的目的是开发一种内部的 3D 重建人角膜样上皮(RhCE),用作产品开发早期的筛选工具。本研究报告了实验程序的建立和模型性能评估,以区分被归类为严重眼损伤/刺激(UN-GHS 类别 1/2)的液体化学品和不需要此类危险分类的液体化学品(UN-GHS 无类别)。基于在化学定义的培养基中培养的正常人类角质形成细胞(NHK)的这种眼部等效模型的组织学检查显示出分层和组织良好的组织构建体。此外,通过 Triton X-100 测量的有效时间 50(ET)证明了屏障的稳健性和功能。预测模型基于测试化学品暴露后的细胞毒性评估。当组织活力平均值超过 60%时,该化学品被定义为无类别;否则,将其归类为类别 1/2。根据适用的 OECD 指导文件(ENV/JM/MONO(2015)23),使用最小参考化学品清单评估了该模型在眼部危害识别方面的性能。结果,该方法的准确率为 84.4%,特异性为 70.8%,灵敏度为 100%,一致性为 93.3%,表明预测性能接近通常用于监管目的的经过验证的参考方法。最后,这些结果表明,这种内部的基于 RhCE 的测试方法是一种用于液体化学品眼部危害识别的定性和准确的筛选工具。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验