Nano/micro-plastics: Sources, trophic transfer, toxicity to the animals and humans, regulation, and assessment.

Q1 Agricultural and Biological Sciences Advances in Food and Nutrition Research Pub Date : 2023-01-01 DOI:10.1016/bs.afnr.2022.07.003
Anandu Chandra Khanashyam, M Anjaly Shanker, Nilesh Prakash Nirmal
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Abstract

Being in an era of revolutionized production, consumption, and poor management of plastic waste, the existence of these polymers has resulted in an accumulation of plastic litter in nature. With macro plastics themselves being a major issue, the presence of their derivatives like microplastics which are confined to the size limitations of less than 5mm has ascended as a recent type of emergent contaminant. Even though there is size confinement, their occurrence is not narrowed and is extensively seen in both aquatic and terrestrial extents. The vast incidence of these polymers causing harmful effects on various living organisms through diverse mechanisms such as entanglement and ingestion have been reported. The risk of entanglement is mainly limited to smaller animals, whereas the risk associated with ingestion concerns even humans. Laboratory findings indicate the alignment of these polymers toward detrimental physical and toxicological effects on all creatures including humans. Supplementary to the risk involved with their presence, plastics also proceed as carters of certain toxic contaminants complemented during their industrial production process, which is injurious. Nevertheless, the assessment regarding the severity of these components to all creatures is comparatively restricted. This chapter focuses on the sources, complications, and toxicity associated with the presence of micro and nano plastics in the environment along with evidence of trophic transfer, and quantification methods.

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纳米/微塑料:来源,营养转移,对动物和人类的毒性,法规和评估。
在一个塑料废物生产、消费和管理不善的革命性时代,这些聚合物的存在导致了自然界塑料垃圾的积累。由于宏观塑料本身是一个主要问题,它们的衍生物,如微塑料的存在,被限制在小于5毫米的尺寸限制,已成为最近一种新兴污染物。尽管存在大小限制,但它们的发生范围并不缩小,在水生和陆生范围内都广泛可见。据报道,这些聚合物通过不同的机制,如缠结和摄入,对各种生物产生有害影响。缠结的风险主要局限于较小的动物,而与摄入相关的风险甚至涉及人类。实验室研究结果表明,这些聚合物对包括人类在内的所有生物都有有害的物理和毒理学影响。除了它们的存在所涉及的风险之外,塑料还作为某些有毒污染物的载体,在其工业生产过程中得到补充,这是有害的。然而,关于这些成分对所有生物的严重程度的评估相对有限。本章重点介绍了环境中微纳米塑料的来源、并发症和毒性,以及营养转移的证据和量化方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Advances in Food and Nutrition Research
Advances in Food and Nutrition Research Agricultural and Biological Sciences-Food Science
CiteScore
8.50
自引率
0.00%
发文量
50
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