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纳米塑料对水生生物毒性的机制、影响及对人类健康潜在影响的综述

Review of mechanisms and impacts of nanoplastic toxicity in aquatic organisms and potential impacts on human health.

作者信息

Thakur Rahul, Joshi Vibhor, Sahoo Ganesh Chandra, Jindal Neetesh, Tiwari Rajnarayan R, Rana Sindhuprava

机构信息

Department of Biostatistics and Bioinformatics, ICMR-National Institute for Research in Environmental Health, Bhopal, Madhya Pradesh, India.

Department of Environmental Biotechnology, Genetics and Molecular Biology, ICMR-National Institute for Research in Environmental Health, Bhopal, Madhya Pradesh, India.

出版信息

Toxicol Rep. 2025 Mar 28;14:102013. doi: 10.1016/j.toxrep.2025.102013. eCollection 2025 Jun.

Abstract

The harmful environmental impact of plastic waste has justifiably received substantial attention from the scientific community. In contrast, the toxicological effects of nanoplastics (NP) on aquatic organisms, as well as the potential implications for human health, remain largely unexplored and poorly understood. Despite the growing awareness of plastic pollution, the risks associated with the ubiquitous presence of nanoplastics in our food and beverages are not yet fully recognized. NPs, which are smaller than 1 µm, along with a mixture of MPs and plastic fragments, can find their way into water bodies through various sources and may easily be taken up by aquatic organisms. This paper summarizes the existing literature on NPs bioavailability, their accumulation patterns within the tissues of fish, shellfish, and zooplankton, as well as the influence of biological and environmental factors on NPs absorption from water and diet. Study indicated that the NPs pose significant risks to both aquatic ecosystems and human health due to their ability to bioaccumulate in marine organisms and biomagnify through the food web. It highlighted that various aquatic species can ingest NPs, leading to their distribution across different tissues, which may result in toxic effects such as oxidative stress, DNA damage, and inflammation, as well as impacts on growth and reproduction. The identified critical gaps in current research, particularly regarding the long-term effects of low-dose NP exposure and the need for standardized testing methodologies to ensure comparability across studies. Furthermore, the necessity for further research to understand the pathways through which humans may be exposed to NPs, their toxicokinetics, and the potential implications for chronic health issues. Therefore, more studies are required which employ rigorous and uniform methodologies to fully address NPs as an emerging threat within aquatic ecosystems and food chains; accurately assess related risks with human health together with cumulative toxicity perhaps when combined with other pollutants.

摘要

塑料垃圾对环境的有害影响理所当然地受到了科学界的广泛关注。相比之下,纳米塑料(NP)对水生生物的毒理学影响以及对人类健康的潜在影响,在很大程度上仍未得到充分探索和了解。尽管人们对塑料污染的认识不断提高,但纳米塑料在我们的食品和饮料中普遍存在所带来的风险尚未得到充分认识。小于1微米的纳米塑料,连同微塑料和塑料碎片的混合物,可以通过各种来源进入水体,并可能很容易被水生生物吸收。本文总结了关于纳米塑料生物可利用性、它们在鱼类、贝类和浮游动物组织内的积累模式,以及生物和环境因素对纳米塑料从水和食物中吸收的影响的现有文献。研究表明,纳米塑料由于能够在海洋生物中生物累积并通过食物链生物放大,对水生生态系统和人类健康都构成了重大风险。它强调各种水生物种可以摄取纳米塑料,导致它们在不同组织中分布,这可能会导致氧化应激、DNA损伤和炎症等毒性作用,以及对生长和繁殖的影响。确定了当前研究中的关键差距,特别是关于低剂量纳米塑料暴露的长期影响以及需要标准化测试方法以确保不同研究之间的可比性。此外,有必要进一步研究以了解人类可能接触纳米塑料的途径、它们的毒代动力学以及对慢性健康问题的潜在影响。因此,需要更多采用严格和统一方法的研究,以充分应对纳米塑料作为水生生态系统和食物链中的一种新出现的威胁;准确评估与人类健康相关的风险以及与其他污染物结合时可能产生的累积毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3d2/11995781/e994aa5a4c86/ga1.jpg

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