Choi Min-Seok, Kim Seoyoung, Lee Si Eun, Yeon Sanghyeon, Park Sanghee, Yang Jun Yong, An Susun
AMOREPACIFIC, 1920, Yonggu-daero, Giheung-gu, Yongin-si, Gyeonggi-do 17074 Republic of Korea.
Chemtopia Co., Ltd, 12th floor, Daerung post tower 7th, 48, Digital-ro 33-gil, Guro-gu, Seoul, 08377 Republic of Korea.
Toxicol Res. 2022 Jul 19;39(1):15-24. doi: 10.1007/s43188-022-00143-3. eCollection 2023 Jan.
Cosmetics, especially rinse-off personal care products (PCPs), such as shampoo, facial cleanser, and body wash, are composed of various chemicals and are one of the sources of chemicals released into aquatic ecosystems. Therefore, the cosmetic industry strives to reduce the impact of their products on the aquatic environment. In this study, we proposed an algorithm based on persistence, bioaccumulation potential, and toxicity (PBT) for the environmental risk assessment of cosmetics. PBT features are generally used in the evaluation of the environmental impact of chemicals. Based on the PBT assessment, it is possible to predict the short- and long-term effects of chemicals on the environment. Our algorithm derives substance and product scores from PBT features, allowing for the risk assessment of each ingredient in the product. Furthermore, we proposed a criterion for the environmental impact grade through which each component can be classified. We intend to use this grade and factors determined through the algorithm to manufacture products with low environmental impact.
化妆品,尤其是洗发水、洗面奶和沐浴露等免洗型个人护理产品(PCPs),由各种化学物质组成,是释放到水生生态系统中的化学物质来源之一。因此,化妆品行业努力减少其产品对水环境的影响。在本研究中,我们提出了一种基于持久性、生物累积潜力和毒性(PBT)的算法,用于化妆品的环境风险评估。PBT特性通常用于评估化学物质对环境的影响。基于PBT评估,可以预测化学物质对环境的短期和长期影响。我们的算法从PBT特性中得出物质和产品分数,从而对产品中的每种成分进行风险评估。此外,我们提出了一个环境影响等级标准,通过该标准可以对每个成分进行分类。我们打算使用这个等级和通过该算法确定的因素来生产对环境影响较小的产品。