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Conservative Exposure Predictions for Rapid Risk Assessment of Phase-Separated Additives in Medical Device Polymers

机译:医疗器械聚合物中相分离添加剂快速风险评估的保守曝光预测

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摘要

A novel approach for rapid risk assessment of targeted leachables in medical device polymers is proposed and validated. Risk evaluation involves understanding the potential of these additives to migrate out of the polymer, and comparing their exposure to a toxicological threshold value. In this study, we propose that a simple diffusive transport model can be used to provide conservative exposure estimates for phase separated color additives in device polymers. This model has been illustrated using a representative phthalocyanine color additive (manganese phthalocyanine, MnPC) and polymer (PEBAX 2533) system. Sorption experiments of MnPC into PEBAX were conducted in order to experimentally determine the diffusion coefficient, D = (1.6 ± 0.5) × 10?11 cm2/s, and matrix solubility limit, Cs = 0.089 wt.%, and model predicted exposure values were validated by extraction experiments. Exposure values for the color additive were compared to a toxicological threshold for a sample risk assessment. Results from this study indicate that a diffusion model-based approach to predict exposure has considerable potential for use as a rapid, screening-level tool to assess the risk of color additives and other small molecule additives in medical device polymers. ? 2017, Biomedical Engineering Society (Outside the U.S.).
机译:提出并验证了一种新的用于快速风险评估的新方法,并验证了医疗器械聚合物中的靶向浸出物。风险评估涉及了解这些添加剂迁移出聚合物的潜力,并比较其暴露于毒理学阈值。在该研究中,我们提出了一种简单的漫射运输模型可用于提供在器件聚合物中的相分离颜色添加剂的保守曝光估计。已经使用代表性酞菁颜色添加剂(锰酞菁,MNPC)和聚合物(PeBax 2533)系统来说明该模型。进行了MNPC进入PeBax的吸附实验,以实验确定扩散系数,D =(1.6±0.5)×10?11cm 2 / s,和基质溶解度极限,CS = 0.089重量%,而模型预测的曝光值是通过提取实验验证。将彩色添加剂的曝光值与样品风险评估的毒理学阈值进行比较。本研究结果表明,基于扩散模型的预测方法具有相当大的用作快速筛分水平工具,以评估医疗器械聚合物中的颜色添加剂和其他小分子添加剂的风险。还2017年,生物医学工程学会(美国外部)。

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