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Exposure of aerosols and nanoparticle dispersions to in vitro cell cultures: A review on the dose relevance of size, mass, surface and concentration

机译:体外细胞培养中暴露的气溶胶和纳米颗粒分散体:大小,质量,表面和浓度的剂量相关性综述

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摘要

The exposure of cell cultures to aerosols or nanoparticle dispersions offers an experimental access to study particle related toxicology and nanomedicine. The present article discusses the concept of dose for soluble or persistent particles with optional stabilizing shells and/or chemical or catalytic activity. We further investigate the minimal set of experiments and controls required for hands-on experiments feasible in well-equipped standard research laboratories. This article recommends strategies to implement nanotoxicity experiments into laboratory routine and shall assist aerosol scientists to engage into biological/medical questions. The most prominent differences between molecule- and particle-related health effects are additionally discussed as physical (concentration-dependent mobility due to agglomeration) and chemical effects (catalytic/chemically active surfaces, Trojan horse type toxin transport through membranes, long-term risks). In the last part we describe the implementation of these concepts within the Swiss Recommendations for Industrial Use of Nanoparticles as a first attempt to provide a regulatory framework for the risk assessment of nanoproducts.
机译:细胞培养物暴露于气溶胶​​或纳米颗粒分散体提供了实验研究颗粒相关毒理学和纳米医学的途径。本文讨论了具有可选的稳定壳和/或化学或催化活性的可溶性或持久性颗粒剂量的概念。我们将进一步研究在设备完善的标准研究实验室中可行的动手实验所需的最少实验和控件集。本文提出了将纳米毒性实验应用于实验室常规的策略,并应协助气溶胶科学家解决生物学/医学问题。此外,还讨论了与分子和颗粒有关的健康影响之间最显着的区别,包括物理作用(由于团聚引起的浓度依赖性迁移)和化学作用(催化/化学活性表面,特洛伊木马毒素通过膜的运输,长期风险)。 。在最后一部分中,我们将在《瑞士纳米颗粒工业用途建议》中描述这些概念的实施,这是首次尝试为纳米产品的风险评估提供监管框架。

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