Nanomaterial Toxicology and Environmental Toxicology Groups, Indian Institute of Toxicology Research, (Council of Scientific and Industrial Research, India), P.O. Box 80, M. G. Marg, Lucknow 226001, India.
J Biomed Nanotechnol. 2011 Feb;7(1):79-80. doi: 10.1166/jbn.2011.1211.
The discovery of new diverse and novel applications for engineered nanomaterials (ENMs) creates possibilities of inadvertent release in the environment. The interactions of ENMs with living systems and possible impact/adverse effects cannot be predicted due to novel size and physiochemical properties. The biological variability, dose dilemma, exposure methods, lack of suitable models and reference materials are certain important constraints in risk assessment of ENPs. Hence, we have explored the efficacy of microorganisms as models to understand uptake, accumulation and mechanism of adverse effects induced by selected nanoparticles.
新型工程纳米材料(ENMs)的各种新颖应用的发现,使它们有可能在环境中意外释放。由于具有新颖的尺寸和物理化学特性,ENMs 与生命系统的相互作用以及可能产生的影响/不良反应是无法预测的。生物变异性、剂量困境、暴露方法、缺乏合适的模型和参考材料,这些都是 ENP 风险评估中的重要限制因素。因此,我们探索了微生物作为模型的功效,以了解选定纳米颗粒引起的摄取、积累和不良反应的机制。