Gajewicz Agnieszka, Cronin Mark T D, Rasulev Bakhtiyor, Leszczynski Jerzy, Puzyn Tomasz
Laboratory of Environmental Chemometrics, Institute for Environmental and Human Health Protection, Faculty of Chemistry, University of Gdansk, Gdansk, Poland.
Nanotechnology. 2015 Jan 9;26(1):015701. doi: 10.1088/0957-4484/26/1/015701. Epub 2014 Dec 4.
Creating suitable chemical categories and developing read-across methods, supported by quantum mechanical calculations, can be an effective solution to solving key problems related to current scarcity of data on the toxicity of various nanoparticles. This study has demonstrated that by applying a nano-read-across, the cytotoxicity of nano-sized metal oxides could be estimated with a similar level of accuracy as provided by quantitative structure-activity relationship for nanomaterials (nano-QSAR model(s)). The method presented is a suitable computational tool for the preliminary hazard assessment of nanomaterials. It also could be used for the identification of nanomaterials that may pose potential negative impact to human health and the environment. Such approaches are especially necessary when there is paucity of relevant and reliable data points to develop and validate nano-QSAR models.
创建合适的化学类别并开发基于量子力学计算支持的类推法,可能是解决当前各种纳米颗粒毒性数据稀缺相关关键问题的有效解决方案。本研究表明,通过应用纳米类推法,可以以与纳米材料定量构效关系(纳米QSAR模型)提供的准确度相似的水平来估计纳米级金属氧化物的细胞毒性。所提出的方法是用于纳米材料初步危害评估的合适计算工具。它还可用于识别可能对人类健康和环境造成潜在负面影响的纳米材料。当缺乏相关且可靠的数据点来开发和验证纳米QSAR模型时,此类方法尤其必要。