National Institute for Occupational Safety and Health , Morgantown, West Virginia 26505, United States.
West Virginia University , Morgantown, West Virginia 26505, United States.
ACS Nano. 2017 Sep 26;11(9):8849-8863. doi: 10.1021/acsnano.7b03038. Epub 2017 Aug 4.
Pulmonary toxicity studies on carbon nanotubes focus primarily on as-produced materials and rarely are guided by a life cycle perspective or integration with exposure assessment. Understanding toxicity beyond the as-produced, or pure native material, is critical, due to modifications needed to overcome barriers to commercialization of applications. In the first series of studies, the toxicity of as-produced carbon nanotubes and their polymer-coated counterparts was evaluated in reference to exposure assessment, material characterization, and stability of the polymer coating in biological fluids. The second series of studies examined the toxicity of aerosols generated from sanding polymer-coated carbon-nanotube-embedded or neat composites. Postproduction modification by polymer coating did not enhance pulmonary injury, inflammation, and pathology or in vitro genotoxicity of as-produced carbon nanotubes, and for a particular coating, toxicity was significantly attenuated. The aerosols generated from sanding composites embedded with polymer-coated carbon nanotubes contained no evidence of free nanotubes. The percent weight incorporation of polymer-coated carbon nanotubes, 0.15% or 3% by mass, and composite matrix utilized altered the particle size distribution and, in certain circumstances, influenced acute in vivo toxicity. Our study provides perspective that, while the number of workers and consumers increases along the life cycle, toxicity and/or potential for exposure to the as-produced material may greatly diminish.
关于碳纳米管的肺部毒性研究主要集中在原始生产材料上,很少从生命周期的角度或与暴露评估相结合进行研究。由于需要对材料进行改性以克服应用商业化的障碍,因此了解原始生产材料或纯原生材料以外的毒性至关重要。在第一系列研究中,评估了原始生产的碳纳米管及其聚合物涂层的毒性,参考了暴露评估、材料特性以及聚合物涂层在生物流体中的稳定性。第二系列研究考察了来自打磨聚合物涂层碳纳米管嵌入或纯复合材料的气溶胶的毒性。聚合物涂层的后生产改性并没有增强原始生产的碳纳米管的肺部损伤、炎症和病理学或体外遗传毒性,并且对于特定的涂层,毒性明显减弱。从嵌入聚合物涂层碳纳米管的复合材料打磨产生的气溶胶中没有发现游离纳米管的证据。聚合物涂层碳纳米管的质量百分比为 0.15%或 3%,复合材料基质的使用改变了粒径分布,并且在某些情况下影响了急性体内毒性。我们的研究提供了一种观点,即随着生命周期中工人和消费者人数的增加,原始生产材料的毒性和/或暴露的可能性可能会大大降低。