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A computational framework for incorporating dermal penetration and elimination pathway predictions into provisional PBPK models: A practical tool in high throughput chemical risk assessment

机译:一种计算框架,用于将真皮渗透和消除途径预测到临时PBPK模型:高吞吐量化学风险评估中的实用工具

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To further the use of non-animal hazard data into emerging risk assessment frameworks, a combination of pharmacokinetic and toxicity information is needed to calculate internal and external dose metrics. Internal dose can provide a linkage to in vitro effect data, allow for a combination of external doses to facilitate aggregate exposure assessment, maximize the ability to compare studies on related chemicals done by different dose routes and species. In this presentation, first we demonstrate the direct linkage between a dermally applied dose and the resulting internal dose and then explore methods to understand the resulting internal dosimetry when measured data to parameterize a PBPK model are missing or incomplete. We have developed an approach for rapid parameterization of dermal PBPK model based solely on in silico QSAR-derived chemical inputs. A computational model for the a priori prediction of renal and metabolic clearance mechanisms was employed in the development of this screening level model. It is anticipated that this screening level information can be used to assess the need for additional data generation when greater accuracy is required (based on projected worst case margins of safety). Importantly, being able to predict whether a compound will be renally eliminated without biotransformation will decrease the number of chemicals for which hepatic clearance will need to be measured experimentally. These concepts can be evaluated and used to help drive decisions and efficiency in safety testing of cosmetics and personal care products. A comparison of model simulations to experimental data will illustrate the approach.
机译:为了进一步使用非动物的危害数据的新兴风险评估框架,药代动力学和毒性信息的组合需要计算的内部和外部剂量的指标。内部剂量可在体外效果数据,允许外部剂量的组合,以促进总暴露评估,最大限度地在不同剂量的路线和品种做相关化学品的研究比较的能力,提供一个链接。在此介绍中,首先我们展示了经皮肤施用的剂量和所得到的内部剂量之间的直接联系,然后测得的数据时,以参数化PBPK模型已丢失或不完全的探索方法来了解所得内部剂量测定。我们已经开发出完全基于在硅片QSAR得到的化学投入了真皮PBPK模型的快速参数的方法。除去肾代谢清除机制的先验预测的计算模型,在此筛选级别车型的发展被采用。可以预料,这种筛选级别的信息可以被用来评估时,需要更高的精度附加数据生成的需求(基于安全性的预期最坏的情况下边距)。重要的是,能够预测将不被生物转化消除经肾的化合物是否将减小其肝清除率将需要实验测量的化学物质的数量。这些概念可以进行评估,并用来帮助推动决策和在化妆品和个人护理产品的安全性测试效率。模型模拟的实验数据的比较将说明该方法。

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