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Towards sensible toxicity testing for nanomaterials: proposal for the specification of test design

机译:迈向纳米材料的合理毒性测试:有关测试设计规范的建议

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摘要

During the last decade, nanomaterials (NM) were extensively tested for potential harmful effects towards humans and environmental organisms. However, a sound hazard assessment was so far hampered by uncertainties and a low comparability of test results. The reason for the low comparability is a high variation in the (1) type of NM tested with regard to raw material, size and shape and (2) procedures before and during the toxicity testing. This calls for tailored, nanomaterial-specific protocols. Here, a structured approach is proposed, intended to lead to test protocols not only tailored to specific types of nanomaterials, but also to respective test system for toxicity testing. There are existing standards on single procedures involving nanomaterials, however, not all relevant procedures are covered by standards. Hence, our approach offers a detailed way of weighting several plausible alternatives for e.g. sample preparation, in order to decide on the procedure most meaningful for a specific nanomaterial and toxicity test. A framework of several decision trees (DT) and flow charts to support testing of NM is proposed as a basis for further refinement and in-depth elaboration. DT and flow charts were drafted for (1) general procedure—physicochemical characterisation, (2) choice of test media, (3) decision on test scenario and application of NM to liquid media, (4) application of NM to the gas phase, (5) application of NM to soil and sediments, (6) dose metrics, (S1) definition of a nanomaterial, and (S2) dissolution. The applicability of the proposed approach was surveyed by using experimental data retrieved from studies on nanoscale CuO. This survey demonstrated the DT and flow charts to be a convenient tool to systematically decide upon test procedures and processes, and hence pose an important step towards harmonisation of NM testing.
机译:在过去的十年中,对纳米材料(NM)进行了广泛的测试,以确定其对人类和环境生物的潜在有害影响。但是,到目前为止,声音的危害性评估受到不确定性和测试结果可比性低的限制。可比性低的原因是:(1)在原材料,尺寸和形状方面测试的NM类型以及(2)在毒性测试之前和之中进行的操作存在较大差异。这需要量身定制的,特定于纳米材料的协议。在这里,提出了一种结构化的方法,旨在导致不仅针对特定类型的纳米材料量身定制的测试协议,而且还针对毒性测试的相应测试系统。对于涉及纳米材料的单一程序,存在现有标准,但是,并非所有相关程序都包含在标准中。因此,我们的方法提供了一种加权多种方法的详细方法,例如样品制备,以便确定对特定纳米材料和毒性测试最有意义的程序。提出了一些决策树(DT)和流程图的框架来支持NM的测试,作为进一步完善和深入阐述的基础。绘制了DT和流程图,以用于(1)通用程序-物理化学表征,(2)测试介质的选择,(3)测试方案的决定以及NM在液体介质中的应用,(4)NM在气相中的应用, (5)将NM应用于土壤和沉积物;(6)剂量度量;(S1)纳米材料的定义;以及(S2)溶出度。通过使用从纳米级CuO研究中获得的实验数据,对所提出方法的适用性进行了调查。这项调查表明DT和流程图是系统地确定测试程序和过程的便捷工具,因此为协调NM测试迈出了重要一步。

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