Defined approaches to classify agrochemical formulations into EPA hazard categories developed using EpiOcularTM reconstructed human corneal epithelium and bovine corneal opacity and permeability assays.

IF 1.6 4区 医学 Q3 OPHTHALMOLOGY Cutaneous and Ocular Toxicology Pub Date : 2024-03-01 Epub Date: 2023-10-31 DOI:10.1080/15569527.2023.2275029
Anna J van der Zalm, Amber B Daniel, Hans A Raabe, Neepa Choksi, Tara Flint Silva, Julie Breeden-Alemi, Lindsay O'Dell, Nicole C Kleinstreuer, Anna B Lowit, David G Allen, Amy J Clippinger
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Abstract

Many sectors have seen complete replacement of the in vivo rabbit eye test with reproducible and relevant in vitro and ex vivo methods to assess the eye corrosion/irritation potential of chemicals. However, the in vivo rabbit eye test remains the standard test used for agrochemical formulations in some countries. Therefore, two defined approaches (DAs) for assessing conventional agrochemical formulations were developed, using the EpiOcularTM Eye Irritation Test (EIT) [Organisation for Economic Co-operation and Development (OECD) test guideline (TG) 492] and the Bovine Corneal Opacity and Permeability (OECD TG 437; BCOP) test with histopathology. Presented here are the results from testing 29 agrochemical formulations, which were evaluated against the United States Environmental Protection Agency's (EPA) pesticide classification system, and assessed using orthogonal validation, rather than direct concordance analysis with the historical in vivo rabbit eye data. Scientific confidence was established by evaluating the methods and testing results using an established framework that considers fitness for purpose, human biological relevance, technical characterisation, data integrity and transparency, and independent review. The in vitro and ex vivo methods used in the DAs were demonstrated to be as or more fit for purpose, reliable and relevant than the in vivo rabbit eye test. Overall, there is high scientific confidence in the use of these DAs for assessing the eye corrosion/irritation potential of agrochemical formulations.

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使用EpiOcularTM重建的人角膜上皮和牛角膜混浊度和渗透性测定法开发的将农用化学品制剂分类为EPA危害类别的确定方法。
许多部门已经用可重复和相关的体外和离体方法完全取代了体内兔眼试验,以评估化学品对眼睛的腐蚀/刺激潜力。然而,在一些国家,体内兔眼试验仍然是农用化学品配方的标准试验。因此,开发了两种用于评估传统农药制剂的明确方法(DA),使用EpiOcularTM眼睛刺激试验(EIT)[经济合作与发展组织(OECD)试验指南(TG)492]和具有组织病理学的牛角膜不透明度和渗透性(OECD TG 437;BCOP)试验。以下是29种农用化学品配方的测试结果,这些配方是根据美国环境保护局(EPA)的农药分类系统进行评估的,并使用正交验证进行评估,而不是直接与体内兔眼历史数据进行一致性分析。科学信心是通过使用既定框架评估方法和测试结果来建立的,该框架考虑了目的适用性、人类生物学相关性、技术特征、数据完整性和透明度以及独立审查。DAs中使用的体外和离体方法被证明与体内兔眼测试一样或更符合目的、可靠且相关。总的来说,使用这些DA来评估农用化学品配方对眼睛的腐蚀/刺激潜力具有很高的科学信心。
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来源期刊
CiteScore
3.30
自引率
6.20%
发文量
40
审稿时长
1 months
期刊介绍: Cutaneous and Ocular Toxicology is an international, peer-reviewed journal that covers all types of harm to cutaneous and ocular systems. Areas of particular interest include pharmaceutical and medical products; consumer, personal care, and household products; and issues in environmental and occupational exposures. In addition to original research papers, reviews and short communications are invited, as well as concise, relevant, and critical reviews of topics of contemporary significance.
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