纳米载体
活性成分
成分
风险分析(工程)
纳米技术
风险评估
产品(数学)
计算机科学
业务
生化工程
医学
纳米颗粒
药理学
工程类
计算机安全
材料科学
数学
病理
几何学
作者
Mélanie Kah,Linda J. Johnston,Rai S. Kookana,Wendy Bruce,Andrea Haase,Vera Ritz,J. Dinglasan,Shareen H. Doak,Hemda Garelick,Vladimir Gubala
标识
DOI:10.1038/s41565-021-00964-7
摘要
Nanopesticides are not only in an advanced state of research and development but have started to appear on the market. Industry and regulatory agencies need a consolidated and comprehensive framework and guidance for human health risk assessments. In this perspective we develop such a comprehensive framework by exploring two case studies from relevant product types: an active ingredient delivered with a nanocarrier system, and a nanoparticle as an active ingredient. For a nanocarrier system, three entities are tracked during the assessment: the nanocarrier–active ingredient complex, the empty nanocarrier remaining after the complete release of the active ingredient, and the released active ingredient. For the nanoparticle of pure active ingredient, only two entities are relevant: the nanoparticle and the released ions. We suggest important adaptations of the existing pesticide framework to determine the relevant nanopesticide entities and their concentrations for toxicity testing. Depending on the nature of the nanopesticides, additional data requirements, such as those pertaining to durability in biological media and potential for crossing biological barriers, have also been identified. Overall, our framework suggests a tiered approach for human health risk assessment, which is applicable for a range of nanopesticide products to support regulators and industry in making informed decisions on nanopesticide submissions. Brief summaries of suitable methods including references to existing standards (if available) have been included together with an analysis of current knowledge gaps. Our study is an important step towards a harmonized approach accepted by regulatory agencies for assessing nanopesticides. This perspective presents a framework with a tiered approach for human health risk assessment of nanopesticides that will facilitate informed decisions by regulators and industry.
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