Saleh Navid B, Afrooz A R M Nabiul, Bisesi Joseph H, Aich Nirupam, Plazas-Tuttle Jaime, Sabo-Attwood Tara
Department of Civil, Architectural and Environmental Engineering, University of Texas at Austin, Austin, TX 78712, USA.
Department of Environmental and Global Health, Center for Human and Environmental Toxicology, University of Florida, Gainesville, FL 32611, USA.
Nanomaterials (Basel). 2014 Jun 3;4(2):372-407. doi: 10.3390/nano4020372.
Conjugation of multiple nanomaterials has become the focus of recent materials development. This new material class is commonly known as nanohybrids or "horizon nanomaterials". Conjugation of metal/metal oxides with carbonaceous nanomaterials and overcoating or doping of one metal with another have been pursued to enhance material performance and/or incorporate multifunctionality into nano-enabled devices and processes. Nanohybrids are already at use in commercialized energy, electronics and medical products, which warrant immediate attention for their safety evaluation. These conjugated ensembles likely present a new set of physicochemical properties that are unique to their individual component attributes, hence increasing uncertainty in their risk evaluation. Established toxicological testing strategies and enumerated underlying mechanisms will thus need to be re-evaluated for the assessment of these horizon materials. This review will present a critical discussion on the altered physicochemical properties of nanohybrids and analyze the validity of existing nanotoxicology data against these unique properties. The article will also propose strategies to evaluate the conjugate materials' safety to help undertake future toxicological research on the nanohybrid material class.
多种纳米材料的共轭已成为近期材料开发的重点。这类新材料通常被称为纳米杂化物或“前沿纳米材料”。人们一直在探索金属/金属氧化物与碳质纳米材料的共轭,以及一种金属对另一种金属的包覆或掺杂,以提高材料性能和/或将多功能性融入纳米器件及工艺中。纳米杂化物已应用于商业化的能源、电子和医疗产品中,其安全性评估值得立即关注。这些共轭组合可能呈现出一组新的物理化学性质,这些性质对于其各个组分属性而言是独特的,因此增加了风险评估的不确定性。因此,为了评估这些前沿材料,需要重新评估既定的毒理学测试策略和列举的潜在机制。本综述将对纳米杂化物改变的物理化学性质进行批判性讨论,并根据这些独特性质分析现有纳米毒理学数据的有效性。本文还将提出评估共轭材料安全性的策略,以帮助开展未来关于纳米杂化物材料类别的毒理学研究。