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首页> 外文期刊>International Journal of Environmental Research and Public Health >Metrics, Dose, and Dose Concept: The Need for a Proper Dose Concept in the Risk Assessment of Nanoparticles
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Metrics, Dose, and Dose Concept: The Need for a Proper Dose Concept in the Risk Assessment of Nanoparticles

机译:指标,剂量和剂量概念:纳米颗粒风险评估中需要正确的剂量概念

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In order to calculate the dose for nanoparticles (NP), (i) relevant information about the dose metrics and (ii) a proper dose concept are crucial. Since the appropriate metrics for NP toxicity are yet to be elaborated, a general dose calculation model for nanomaterials is not available. Here we propose how to develop a dose assessment model for NP in analogy to the radiation protection dose calculation, introducing the so-called “deposited and the equivalent dose”. As a dose metric we propose the total deposited NP surface area (SA), which has been shown frequently to determine toxicological responses e.g. of lung tissue. The deposited NP dose is proportional to the total surface area of deposited NP per tissue mass, and takes into account primary and agglomerated NP. By using several weighting factors the equivalent dose additionally takes into account various physico-chemical properties of the NP which are influencing the biological responses. These weighting factors consider the specific surface area, the surface textures, the zeta-potential as a measure for surface charge, the particle morphology such as the shape and the length-to-diameter ratio (aspect ratio), the band gap energy levels of metal and metal oxide NP, and the particle dissolution rate. Furthermore, we discuss how these weighting factors influence the equivalent dose of the deposited NP.
机译:为了计算纳米颗粒(NP)的剂量,(i)有关剂量指标的相关信息和(ii)适当的剂量概念至关重要。由于尚未详细阐述NP毒性的适当指标,因此尚无用于纳米材料的通用剂量计算模型。在这里,我们提出了与辐射防护剂量计算类似的方法,如何开发用于NP的剂量评估模型,引入了所谓的“沉积剂量和等效剂量”。作为剂量度量,我们提出了总沉积的NP表面积(SA),该值经常显示出来,可以确定毒理学响应,例如:肺组织。沉积的NP剂量与每个组织块沉积的NP的总表面积成正比,并考虑了主要和聚集的NP。通过使用几个加权因子,等效剂量还考虑了影响生物学反应的NP的各种物理化学性质。这些加权因子考虑了比表面积,表面纹理,ζ电位作为表面电荷的量度,颗粒形态(例如形状和长径比(长宽比)),带隙能级等。金属和金属氧化物NP以及颗粒的溶解速度。此外,我们讨论了这些加权因子如何影响沉积NP的等效剂量。

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