Exact and Earth Sciences Department, Universidade Federal de São Paulo , Diadema, São Paulo, Brazil.
Chem Res Toxicol. 2014 Feb 17;27(2):159-68. doi: 10.1021/tx400385x. Epub 2014 Jan 14.
Graphene and its derivatives are promising candidates for important biomedical applications because of their versatility. The prospective use of graphene-based materials in a biological context requires a detailed comprehension of the toxicity of these materials. Moreover, due to the expanding applications of nanotechnology, human and environmental exposures to graphene-based nanomaterials are likely to increase in the future. Because of the potential risk factors associated with the manufacture and use of graphene-related materials, the number of nanotoxicological studies of these compounds has been increasing rapidly in the past decade. These studies have researched the effects of the nanostructural/biological interactions on different organizational levels of the living system, from biomolecules to animals. This review discusses recent results based on in vitro and in vivo cytotoxicity and genotoxicity studies of graphene-related materials and critically examines the methodologies employed to evaluate their toxicities. The environmental impact from the manipulation and application of graphene materials is also reported and discussed. Finally, this review presents mechanistic aspects of graphene toxicity in biological systems. More detailed studies aiming to investigate the toxicity of graphene-based materials and to properly associate the biological phenomenon with their chemical, structural, and morphological variations that result from several synthetic and processing possibilities are needed. Knowledge about graphene-based materials could ensure the safe application of this versatile material. Consequently, the focus of this review is to provide a source of inspiration for new nanotoxicological approaches for graphene-based materials.
由于其多功能性,石墨烯及其衍生物是有前途的重要生物医学应用候选材料。基于石墨烯的材料在生物环境中的预期用途需要详细了解这些材料的毒性。此外,由于纳米技术应用的不断扩大,未来人类和环境接触基于石墨烯的纳米材料的可能性将会增加。由于与制造和使用石墨烯相关材料相关的潜在风险因素,过去十年中对这些化合物的纳米毒理学研究数量迅速增加。这些研究研究了纳米结构/生物相互作用对从生物分子到动物的生命系统不同组织层次的影响。本综述讨论了基于体外和体内细胞毒性和遗传毒性研究的石墨烯相关材料的最新结果,并批判性地审查了用于评估其毒性的方法。还报告和讨论了操纵和应用石墨烯材料对环境的影响。最后,本综述介绍了生物系统中石墨烯毒性的机制方面。需要进行更详细的研究,以调查基于石墨烯的材料的毒性,并将生物学现象与其由于多种合成和加工可能性而导致的化学、结构和形态变化适当联系起来。关于石墨烯材料的知识可以确保这种多功能材料的安全应用。因此,本综述的重点是为基于石墨烯的材料的新的纳米毒理学方法提供灵感来源。