German Federal Institute for Risk Assessment (BfR), Department of Chemical and Product Safety, Berlin, Germany.
German Federal Institute for Risk Assessment (BfR), Department of Chemical and Product Safety, Berlin, Germany.
NanoImpact. 2022 Oct;28:100416. doi: 10.1016/j.impact.2022.100416. Epub 2022 Aug 20.
The widespread integration of engineered nanomaterials into consumer and industrial products creates new challenges and requires innovative approaches in terms of design, testing, reliability, and safety of nanotechnology. The aim of this review article is to give an overview of different product groups in which nanomaterials are present and outline their safety aspects for consumers. Here, release of nanomaterials and related analytical challenges and solutions as well as toxicological considerations, such as dose-metrics, are discussed. Additionally, the utilization of engineered nanomaterials as pharmaceuticals or nutraceuticals to deliver and release cargo molecules is covered. Furthermore, critical pathways for human exposure to nanomaterials, namely inhalation and ingestion, are discussed in the context of risk assessment. Analysis of NMs in food, innovative medicine or food contact materials is discussed. Specific focus is on the presence and release of nanomaterials, including whether nanomaterials can migrate from polymer nanocomposites used in food contact materials. With regard to the toxicology and toxicokinetics of nanomaterials, aspects of dose metrics of inhalation toxicity as well as ingestion toxicology and comparison between in vitro and in vivo conclusions are considered. The definition of dose descriptors to be applied in toxicological testing is emphasized. In relation to potential exposure from different products, opportunities arising from the use of advanced analytical techniques in more unique scenarios such as release of nanomaterials from medical devices such as orthopedic implants are addressed. Alongside higher product performance and complexity, further challenges regarding material characterization and safety, as well as acceptance by the general public are expected.
将工程纳米材料广泛集成到消费和工业产品中,在设计、测试、可靠性和纳米技术安全性方面带来了新的挑战,并需要创新的方法。本文的目的是概述纳米材料存在于不同产品组中,并概述其对消费者的安全方面。在这里,讨论了纳米材料的释放及其相关的分析挑战和解决方案,以及毒理学考虑因素,如剂量指标。此外,还涵盖了作为药物或营养保健品的工程纳米材料在输送和释放货物分子方面的利用。此外,还讨论了人类暴露于纳米材料的关键途径,即吸入和摄入,并在风险评估的背景下进行了讨论。还讨论了食品、创新药物或食品接触材料中的纳米材料分析。特别关注纳米材料的存在和释放,包括纳米材料是否可以从用于食品接触材料的聚合物纳米复合材料中迁移。关于纳米材料的毒理学和毒代动力学,考虑了吸入毒性剂量指标以及摄入毒理学以及体外和体内结论之间的比较的方面。强调了在毒理学测试中应用剂量描述符的定义。关于不同产品的潜在暴露,在更独特的情况下,如从骨科植入物等医疗器械中释放纳米材料,使用先进的分析技术带来了机会。除了更高的产品性能和复杂性之外,还预计在材料特性和安全性以及公众接受度方面将面临进一步的挑战。