School of Nursing & School of Public Health, Yangzhou University, Yangzhou 225000, China.
Key Laboratory of Environmental Medicine Engineering, Ministry of Education, School of Public Health, Southeast University, Nanjing 210009, China.
Ecotoxicol Environ Saf. 2023 Apr 1;254:114745. doi: 10.1016/j.ecoenv.2023.114745. Epub 2023 Mar 9.
The toxic effects of micro(nano)plastics are long-standing, flourishing and fadeless as a research topic because of its' underlying threats to the ecology and human health. Nevertheless, in most of the existing studies, some model organisms are exposed to micro(nano)plastics at a high concentration unlikely to occur in the real environment, and there is limited data available on the impact of micro(nano)plastics at environmentally relevant concentrations (ERC) on environmental organisms. To gain a better insight into micro(nano)plastic toxicity to the environmental organisms, here we integrate the related publications of micro(nano)plastic research at ERC in the past 10 years using a bibliometric analysis, and focus on the analysis of publication trends, research focuses, collaborations, and research status. In addition, we further analyze the 33 final filtered literature, and elucidate the organismal response to micro(nano)plastics at ERC from the perspective of in vivo toxic effects and mechanisms involved. This paper also puts forward some limitations of the current study and some suggestions for future research. Our study may be of great significance in further understanding the ecotoxicity of micro(nano)plastics.
由于微(纳)塑料对生态和人类健康的潜在威胁,其毒性作用是一个长期存在、蓬勃发展且不衰的研究课题。然而,在大多数现有研究中,一些模式生物暴露于高浓度的微(纳)塑料,而这种浓度在真实环境中不太可能出现,并且关于环境相关浓度(ERC)下微(纳)塑料对环境生物的影响的数据有限。为了更好地了解微(纳)塑料对环境生物的毒性,我们在这里使用文献计量分析整合了过去 10 年 ERC 下微(纳)塑料研究的相关出版物,并重点分析了出版趋势、研究重点、合作和研究现状。此外,我们进一步分析了 33 篇最终筛选出的文献,并从体内毒性效应和涉及的机制的角度阐明了 ERC 下微(纳)塑料对生物体的反应。本文还提出了当前研究的一些局限性和对未来研究的一些建议。我们的研究可能对进一步了解微(纳)塑料的生态毒性具有重要意义。