Harmful effects of microplastics on respiratory system of aquatic animals: A systematic review and meta-analysis

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL
Qiurong Zhang , Xin Zhou , Yu Sun , Qingfang Deng , Qing Wu , Zhirui Wen , Huaguo Chen
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Abstract

The presence of microplastics in the aquatic environment has attracted widespread attention. A large number of studies have assessed the effects of microplastics on the respiratory system of aquatic animals, but the results are not directly comparable across studies due to inconsistent evaluation criteria. Therefore, we adopted an integrated research approach that can integrate and parse complex data to improve reliability, conducted a systematic review and meta-analysis of 35 published studies, and elucidated the mechanisms of microplastic damage to cells. The results showed that PE had the greatest impact on aquatic animals, and fish were the most sensitive to the effects caused by microplastics, with oxidative stress induced by exposure concentrations exceeding 1000 µg/L or exposure times exceeding 28 days, leading to depletion of antioxidant defenses, cellular damage, inflammatory responses, and behavioral abnormalities. As this review is based on existing studies, there may be limitations in terms of literature quality, data availability and timeliness. In conclusion, we suggest to combat microplastic pollution by limiting plastic use, promoting plastic substitution and recycling, and enhancing microplastic capture degradation technologies.

Abstract Image

微塑料对水生动物呼吸系统的有害影响:系统回顾和荟萃分析
水生环境中存在的微塑料已引起广泛关注。大量研究评估了微塑料对水生动物呼吸系统的影响,但由于评估标准不一致,不同研究的结果无法直接比较。因此,我们采用了一种能够整合和解析复杂数据以提高可靠性的综合研究方法,对已发表的 35 项研究进行了系统回顾和荟萃分析,并阐明了微塑料对细胞的损伤机制。结果表明,聚乙烯对水生动物的影响最大,鱼类对微塑料造成的影响最为敏感,接触浓度超过1000微克/升或接触时间超过28天,就会诱发氧化应激,导致抗氧化防御功能耗竭、细胞损伤、炎症反应和行为异常。由于本综述以现有研究为基础,因此在文献质量、数据可用性和及时性方面可能存在局限性。总之,我们建议通过限制塑料的使用、促进塑料替代和回收以及加强微塑料捕获降解技术来应对微塑料污染。
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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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