Jewett Elysia, Arnott Gareth, Connolly Lisa, Vasudevan Nandini, Kevei Eva
School of Biological Sciences, University of Reading, Reading, United Kingdom.
The Institute for Global Food Security, School of Biological Sciences, Queen's University Belfast, Northern Ireland, United Kingdom.
Front Toxicol. 2022 Mar 24;4:748912. doi: 10.3389/ftox.2022.748912. eCollection 2022.
Biologically active environmental pollutants have significant impact on ecosystems, wildlife, and human health. Microplastic (MP) and nanoplastic (NP) particles are pollutants that are present in the terrestrial and aquatic ecosystems at virtually every level of the food chain. Moreover, recently, airborne microplastic particles have been shown to reach and potentially damage respiratory systems. Microplastics and nanoplastics have been shown to cause increased oxidative stress, inflammation, altered metabolism leading to cellular damage, which ultimately affects tissue and organismal homeostasis in numerous animal species and human cells. However, the full impact of these plastic particles on living organisms is not completely understood. The ability of MPs/NPs to carry contaminants, toxic chemicals, pesticides, and bioactive compounds, such as endocrine disrupting chemicals, present an additional risk to animal and human health. This review will discusses the current knowledge on pathways by which microplastic and nanoplastic particles impact reproduction and reproductive behaviors from the level of the whole organism down to plastics-induced cellular defects, while also identifying gaps in current knowledge regarding mechanisms of action. Furthermore, we suggest that the nematode provides an advantageous high-throughput model system for determining the effect of plastic particles on animal reproduction, using reproductive behavioral end points and cellular readouts.
具有生物活性的环境污染物对生态系统、野生动物和人类健康有着重大影响。微塑料(MP)和纳米塑料(NP)颗粒是几乎存在于陆地和水生生态系统食物链各个层级的污染物。此外,最近有研究表明,空气中的微塑料颗粒能够到达并可能损害呼吸系统。已证实微塑料和纳米塑料会导致氧化应激增加、炎症反应、新陈代谢改变进而造成细胞损伤,这最终会影响众多动物物种和人类细胞中的组织及机体稳态。然而,这些塑料颗粒对生物体的全面影响尚未完全明晰。微塑料/纳米塑料携带污染物、有毒化学物质、杀虫剂以及生物活性化合物(如内分泌干扰化学物质)的能力,给动物和人类健康带来了额外风险。本综述将探讨关于微塑料和纳米塑料颗粒从整个生物体层面到塑料诱导的细胞缺陷影响生殖及生殖行为的途径的现有知识,同时也指出当前关于作用机制的知识空白。此外,我们认为线虫为利用生殖行为终点和细胞读数来确定塑料颗粒对动物繁殖的影响提供了一个有利的高通量模型系统。