Moloi Mbuyiselwa Shadrack, Lehutso Raisibe Florence, Erasmus Mariana, Oberholster Paul Johan, Thwala Melusi
Centre for Environmental Management, University of the Free State, Bloemfontein 9031, South Africa.
Water Centre, Council for Scientific and Industrial Research, Pretoria 0001, South Africa.
Nanomaterials (Basel). 2021 Oct 27;11(11):2868. doi: 10.3390/nano11112868.
Rapid commercialisation of nano-enabled products (NEPs) elevates the potential environmental release of engineered nanomaterials (ENMs) along the product life cycle. The current review examined the state of the art literature on aquatic environment exposure and ecotoxicity of product released (PR) engineered nanomaterials (PR-ENMs). Additionally, the data obtained were applied to estimate the risk posed by PR-ENMs to various trophic levels of aquatic biota as a means of identifying priority NEPs cases that may require attention with regards to examining environmental implications. Overall, the PR-ENMs are predominantly associated with the matrix of the respective NEPs, a factor that often hinders proper isolation of nano-driven toxicity effects. Nevertheless, some studies have attributed the toxicity basis of observed adverse effects to a combination of the released ions, ENMs and other components of NEPs. Notwithstanding the limitation of current ecotoxicology data limitations, the risk estimated herein points to an elevated risk towards fish arising from fabrics' PR-nAg, and the considerable potential effects from sunscreens' PR-nZnO and PR-nTiO to algae, echinoderms, and crustaceans (PR-nZnO), whereas PR-nTiO poses no significant risk to echinoderms. Considering that the current data limitations will not be overcome immediately, we recommend the careful application of similar risk estimation to isolate/prioritise cases of NEPs for detailed characterisation of ENMs' release and effects in aquatic environments.
纳米产品(NEPs)的快速商业化增加了工程纳米材料(ENMs)在产品生命周期中向环境释放的可能性。本综述研究了有关产品释放的(PR)工程纳米材料(PR-ENMs)在水生环境中的暴露及生态毒性的现有文献。此外,所获得的数据被用于评估PR-ENMs对水生生物群不同营养级构成的风险,以此来确定在研究环境影响时可能需要关注的重点NEP案例。总体而言,PR-ENMs主要与各自NEP的基质相关联,这一因素常常阻碍对纳米驱动的毒性效应进行恰当分离。然而,一些研究已将观察到的不良反应的毒性依据归因于释放出的离子、ENMs以及NEP的其他成分的综合作用。尽管当前生态毒理学数据存在局限性,但本文所估计的风险表明,织物中的PR-nAg对鱼类的风险增加,防晒霜中的PR-nZnO和PR-nTiO对藻类、棘皮动物和甲壳类动物(PR-nZnO)具有相当大的潜在影响,而PR-nTiO对棘皮动物没有显著风险。鉴于当前的数据局限性无法立即克服,我们建议谨慎应用类似的风险评估来分离/确定NEP案例的优先级,以便详细描述ENMs在水生环境中的释放及影响。