College of Natural Resources and Environment, Northwest A&F University, Yangling 712100, Shaanxi Province, PR China; CSIR-National Environmental Engineering Research Institute (CSIR-NEERI), Nehru Marg, Nagpur 440020, Maharashtra, India.
Institute of Biology, Freie Universität Berlin, Altensteinstr. 6, Berlin 14195, Germany.
J Hazard Mater. 2021 May 5;409:124967. doi: 10.1016/j.jhazmat.2020.124967. Epub 2020 Dec 30.
Micro-and nano-plastics (MNPs) (size < 5 mm/<100 nm) epitomize one of the emergent environmental pollutants with its existence all around the globe. Their high persistence nature and release of chemicals/additives used in synthesis of plastics materials may pose cascading impacts on living organism across the globe. Natural connectivity of all the environmental compartments (terrestrial, aquatic, and atmospheric) leads to migration/dispersion of MNPs from one compartment to others. Nevertheless, the information on dispersion of MNPs across the environmental compartments and its possible impacts on living organisms are still missing. This review first acquaints with dispersion mechanisms of MNPs in the environment, its polymeric/oligomeric and chemical constituents and then emphasized its impacts on living organism. Based on the existing knowledge about the MNPs' constituent and its potential impacts on the viability, development, lifecycle, movements, and fertility of living organism via several potential mechanisms, such as irritation, oxidative damage, digestion impairment, tissue deposition, change in gut microbial communities' dynamics, impaired fatty acid metabolism, and molecular damage are emphasized. Finally, at the end, the review provided the challenges associated with remediation of plastics pollutions and desirable strategies, policies required along with substantial gaps in MNPs research were recommended for future studies.
微塑料和纳米塑料(MNPs)(尺寸<5 毫米/<100 纳米)是新兴环境污染物之一,它们在全球范围内存在。它们具有高度持久性,并且在合成塑料材料时释放的化学物质/添加剂可能对全球范围内的生物产生级联影响。所有环境组分(陆地、水生和大气)的自然连通性导致 MNPs 从一个组分迁移/分散到另一个组分。然而,关于 MNPs 在环境组分中的分散及其对生物体可能产生的影响的信息仍然缺乏。本综述首先介绍了 MNPs 在环境中的分散机制、其聚合物/低聚物和化学成分,然后强调了其对生物体的影响。基于关于 MNPs 成分及其通过几种潜在机制(如刺激、氧化损伤、消化损伤、组织沉积、肠道微生物群落动态变化、脂肪酸代谢受损和分子损伤)对生物体的生存能力、发育、生命周期、运动和繁殖的潜在影响的现有知识,强调了这一点。最后,在综述的最后,提出了与塑料污染修复相关的挑战和所需的策略、政策,并建议未来进行研究以填补 MNPs 研究中的空白。