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Physico-chemical properties of manufactured nanomaterials - Characterisation and relevant methods. An outlook based on the OECD Testing Programme

机译:人造纳米材料的理化性质-表征和相关方法。基于经合组织测试计划的展望

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摘要

Identifying and characterising nanomaterials require additional information on physico-chemical properties and test methods, compared to chemicals in general. Furthermore, regulatory decisions for chemicals are usually based upon certain toxicological properties, and these effects may not be equivalent to those for nanomaterials. However, regulatory agencies lack an authoritative decision framework for nanomaterials that links the relevance of certain physico-chemical endpoints to toxicological effects. This paper investigates various physico-chemical endpoints and available test methods that could be used to produce such a decision framework for nanomaterials. It presents an overview of regulatory relevance and methods used for testing fifteen proposed physico-chemical properties of eleven nanomaterials in the OECD Working Party on Manufactured Nanomaterials' Testing Programme, complemented with methods from literature, and assesses the methods' adequacy and applications limits. Most endpoints are of regulatory relevance, though the specific parameters depend on the nanomaterial and type of assessment. Size (distribution) is the common characteristic of all nanomaterials and is decisive information for classifying a material as a nanomaterial. Shape is an important particle descriptor. The octanol-water partitioning coefficient is undefined for particulate nanomaterials. Methods, including sample preparation, need to be further standardised, and some new methods are needed. The current work of OECD's Test Guidelines Programme regarding physico-chemical properties is highlighted.
机译:与一般的化学药品相比,鉴定和表征纳米材料需要有关理化性质和测试方法的更多信息。此外,对化学品的管理决策通常基于某些毒理学特性,并且这些影响可能不等同于纳米材料。但是,监管机构缺乏将某些物理化学终点与毒理学效应相关联的纳米材料权威决策框架。本文研究了各种物理化学终点和可用的测试方法,这些方法可用于产生这种纳米材料的决策框架。它概述了监管相关性以及在经合组织制造纳米材料测试计划工作组中测试11种纳米材料的15种拟议理化特性所使用的方法,并结合文献中的方法,并对方法的适用性和应用范围进行了评估。尽管具体参数取决于纳米材料和评估类型,但大多数端点都具有监管意义。尺寸(分布)是所有纳米材料的共同特征,是将材料分类为纳米材料的决定性信息。形状是重要的粒子描述符。对于颗粒纳米材料,辛醇-水分配系数是不确定的。方法,包括样品制备,需要进一步标准化,并且需要一些新方法。着重介绍了经合组织有关理化特性的测试指南计划的当前工作。

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