Area of Toxicology, Faculty of Pharmacy, Universidad de Sevilla, Spain.
Area of Toxicology, Faculty of Pharmacy, Universidad de Sevilla, Spain.
Food Chem Toxicol. 2022 Jun;164:113014. doi: 10.1016/j.fct.2022.113014. Epub 2022 Apr 14.
Different applications have been suggested for graphene nanomaterials (GFNs) in the food and feed chain. However, it is necessary to perform a risk assessment before they become market-ready, and when consumer exposure is demonstrated. For this purpose, the European Food Safety Authority (EFSA) has published a guidance that has been recently updated. In this sense, the aim of this study is to identify and characterise toxicological hazards related to GFNs after oral exposure. Thus, existing scientific literature in relation to in vitro degradation studies, in vitro and in vivo genotoxicity, toxicokinetics data, in vivo oral studies, and other in-depth studies such as effects on the microbiome has been revised. The obtained results showed that the investigations performed up to now did not follow internationally agreed-upon test guidelines. Moreover, GFNs seemed to resist gastrointestinal digestion and were able to be absorbed, distributed, and excreted, inducing toxic effects at different levels, including genotoxicity. Also, dose has an important role as it has been reported that low doses are more toxic than high doses because GFNs tend to aggregate in the digestive system, changing the internal exposure scenario. Thus, further studies including a thorough toxicological evaluation are required to protect consumer's safety.
不同的应用已经被建议用于食品和饲料链中的石墨烯纳米材料(GFNs)。然而,在它们成为市场准备就绪并展示消费者暴露之前,有必要进行风险评估。为此,欧洲食品安全局(EFSA)发布了一份指导意见,最近已经更新。在这方面,本研究的目的是确定和描述与口服暴露后 GFNs 相关的毒理学危害。因此,已经对与体外降解研究、体外和体内遗传毒性、毒代动力学数据、体内口服研究以及其他深入研究(如对微生物组的影响)相关的现有科学文献进行了审查。获得的结果表明,到目前为止进行的研究没有遵循国际商定的测试指南。此外,GFNs 似乎能够抵抗胃肠道消化,并能够被吸收、分布和排泄,在不同水平上引起毒性作用,包括遗传毒性。此外,剂量也起着重要作用,因为有报道称低剂量比高剂量更具毒性,因为 GFNs 在消化系统中倾向于聚集,改变内部暴露情况。因此,需要进一步研究,包括全面的毒理学评估,以保护消费者的安全。