Cosmetics Europe, Science & Research Department, Avenue Herrmann-Debroux 40, Brussels, Belgium.
Safety & Environmental Assurance Centre, Unilever U.K. Central Resources Limited, Colworth Science Park, Sharnbrook MK44 1LQ Bedfordshire, UK.
Toxicol In Vitro. 2018 Aug;50:137-146. doi: 10.1016/j.tiv.2018.02.017. Epub 2018 Mar 2.
When performing safety assessment of chemicals, the evaluation of their systemic toxicity based only on non-animal approaches is a challenging objective. The Safety Evaluation Ultimately Replacing Animal Test programme (SEURAT-1) addressed this question from 2011 to 2015 and showed that further research and development of adequate tools in toxicokinetic and toxicodynamic are required for performing non-animal safety assessments. It also showed how to implement tools like thresholds of toxicological concern (TTCs) and read-across in this context. This paper shows a tiered scientific workflow and how each tier addresses the four steps of the risk assessment paradigm. Cosmetics Europe established its Long Range Science Strategy (LRSS) programme, running from 2016 to 2020, based on the outcomes of SEURAT-1 to implement this workflow. Dedicated specific projects address each step of this workflow, which is introduced here. It tackles the question of evaluating the internal dose when systemic exposure happens. The applicability of the workflow will be shown through a series of case studies, which will be published separately. Even if the LRSS puts the emphasis on safety assessment of cosmetic relevant chemicals, it remains applicable to any type of chemical.
在对化学品进行安全评估时,仅基于非动物方法评估其系统毒性是一个具有挑战性的目标。2011 年至 2015 年,安全评估最终替代动物测试计划(SEURAT-1)针对这一问题进行了研究,结果表明,需要进一步研究和开发毒代动力学和毒效动力学方面的适当工具,以进行非动物安全评估。它还展示了如何在这种情况下实施毒理学关注阈值(TTC)和数据外推等工具。本文展示了一个分层的科学工作流程,以及每个层次如何解决风险评估范例的四个步骤。化妆品欧洲组织(Cosmetics Europe)基于 SEURAT-1 的研究成果,制定了其从 2016 年至 2020 年的长期科学战略(LRSS)计划,以实施这一工作流程。专门的具体项目针对该工作流程的每个步骤进行了处理,本文对此进行了介绍。它解决了系统暴露时评估内剂量的问题。该工作流程的适用性将通过一系列案例研究来展示,这些案例研究将单独发表。即使 LRSS 强调对化妆品相关化学物质进行安全评估,它仍然适用于任何类型的化学物质。