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虾类中微塑料和纳米塑料的影响:塑料颗粒和污染物分布的机制,以及摄入后的后续影响。

Effects of microplastics and nanoplastics in shrimp: Mechanisms of plastic particle and contaminant distribution and subsequent effects after uptake.

机构信息

Department of Civil and Environmental Engineering, University of Nevada, Reno, NV 89557, USA.

Department of Crop and Soil Science, Washington State University, Pullman, WA 99163, USA.

出版信息

Sci Total Environ. 2023 Oct 10;894:164999. doi: 10.1016/j.scitotenv.2023.164999. Epub 2023 Jun 20.

Abstract

To date, previous studies have reported the adverse effects of microplastics (MPs) and nanoplastics (NPs) on both freshwater and marine organisms. However, the information on MPs' and NPs' effects on shrimp species is scarce. In addition, the factors influencing the distribution of these particles in aquatic systems have been explained, yet the mechanisms behind MPs and NPs distribution and consumption, specifically to crustaceans and shrimp, have not been elucidated in detail. The effects of MPs and NPs as well as plastic-carried contaminants and pathogens on shrimp are critical to shrimp production and subsequent human consumption. Recent findings are required to review and discuss to open up new avenues for emerging Shrimp and crustacean research for sustainability. This review summarizes the distribution and fate of MPs and NPs along with contaminants and pathogens and identifies potential risks to shrimp health. The transport of MPs and NPs is influenced by their plastic properties, hydrodynamics, and water properties. Additionally, the fate of these particles on a plastic surface (plastisphere) is regulated by contaminant properties. Pathogens thriving on plastic surfaces and contaminants adsorbed can reach aquatic organisms directly with plastic particles or indirectly after release to an aquatic environment. MPs and NPs can be absorbed by shrimp through their gills and mouth and accumulate in their internal organs. Innate immunity influenced the degree of survival rate, tissue damage, alteration of gut microbiota, and increased oxidative stress caused by MPs and NPs accumulation. The studies on the effects of MPs and NPs are still not sufficient to understand how these particles are absorbed from various parts of the shrimp body and the fate of these plastics inside the body.

摘要

迄今为止,先前的研究报告了微塑料(MPs)和纳米塑料(NPs)对淡水和海洋生物的不良影响。然而,有关 MPs 和 NPs 对虾类影响的信息却很少。此外,已经解释了影响这些颗粒在水生系统中分布的因素,但 MPs 和 NPs 分布和消耗的机制,特别是对甲壳类动物和虾类,尚未详细阐明。MPs 和 NPs 以及携带污染物和病原体的塑料对虾的影响对虾类生产和随后的人类消费至关重要。需要对最近的发现进行审查和讨论,为新兴的虾类和甲壳类动物研究的可持续性开辟新途径。本综述总结了 MPs 和 NPs 以及污染物和病原体的分布和归宿,并确定了对虾健康的潜在风险。MPs 和 NPs 的传输受其塑料特性、流体力学和水特性的影响。此外,这些颗粒在塑料表面(塑料圈)上的命运受污染物特性的调节。在塑料表面上茁壮成长的病原体和被吸附的污染物可以直接通过塑料颗粒或在释放到水生环境后间接到达水生生物。MPs 和 NPs 可以通过虾类的鳃和口被吸收,并在其内脏器官中积累。先天免疫影响了 MPs 和 NPs 积累引起的存活率、组织损伤、肠道微生物群改变和氧化应激增加的程度。对 MPs 和 NPs 影响的研究还不足以了解这些颗粒是如何从虾体的各个部位被吸收的,以及这些塑料在体内的命运。

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