Preparation of PBAT microplastics and their potential toxicity to zebrafish embryos and juveniles

IF 4.1 2区 环境科学与生态学 Q1 MARINE & FRESHWATER BIOLOGY Aquatic Toxicology Pub Date : 2024-08-24 DOI:10.1016/j.aquatox.2024.107065
Mengmeng Xie, Kai Cai, Jing Zhang, Shuhua Tu, Jie Feng
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Abstract

The extensive use of traditional non-biodegradable plastics results in the generation of microplastics (MPs), forming a new pollutant that can pose significant environmental risks. Biodegradable plastics (BP) possess degradation properties and can partially replace conventional plastics, thereby reducing pollution. However, further investigation is needed into the toxicity of biodegradable microplastics (BMPs) on aquatic organisms. This study explores the toxic effects of PBAT microplastics (PBAT-BMPs) and microplastics produced from degradable PBAT/TPS (thermoplastic starch) composite film (PBAT/TPS-BMPs) on zebrafish embryos. Our findings indicate that the presence of microplastics on the embryo's surface increases with higher BMPs concentration. Nonetheless, PBAT-BMPs tend to aggregate and are blocked by the embryonic membrane, thus diminishing their toxic effects on the embryo. Acute toxicity experiments revealed that 30 mg/L of PBAT-BMPs significantly reduced the survival rate of zebrafish embryos, whereas PBAT/TPS-BMPs had a lesser effect on survival. Both types of BMPs influenced the hatching rate of the embryos, leading to prolonged incubation periods. Additionally, both types of BMPs impacted the locomotor behavior of zebrafish larvae, causing an increase in larval locomotor speed. However, these BMPs had little impact on larval body development and heartbeat behavior. Fluorescent microplastic tracer experiments demonstrated that PBAT-BMPs persisted in juvenile fish for at least 144 h and were difficult to metabolize and excrete. Our study aims to gain a better understanding of the potential effects of BMPs on aquatic ecosystems and biological health, as well as to propose effective strategies for reducing environmental pollution and protecting organisms.

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制备 PBAT 微塑料及其对斑马鱼胚胎和幼鱼的潜在毒性
大量使用传统的不可降解塑料会产生微塑料(MPs),从而形成一种新的污染物,对环境造成严重危害。生物降解塑料(BP)具有降解特性,可以部分替代传统塑料,从而减少污染。然而,生物可降解塑料(BMP)对水生生物的毒性还需要进一步研究。本研究探讨了 PBAT 微塑料(PBAT-BMPs)和由可降解 PBAT/TPS(热塑性淀粉)复合膜制成的微塑料(PBAT/TPS-BMPs)对斑马鱼胚胎的毒性影响。我们的研究结果表明,胚胎表面的微塑料随着 BMPs 浓度的增加而增加。不过,PBAT-BMPs 有聚集的趋势,会被胚胎膜阻挡,从而降低其对胚胎的毒性作用。急性毒性实验表明,30 毫克/升的 PBAT-BMPs 会显著降低斑马鱼胚胎的存活率,而 PBAT/TPS-BMPs 对存活率的影响较小。两种 BMPs 都会影响胚胎的孵化率,导致孵化期延长。此外,这两种 BMP 还影响斑马鱼幼体的运动行为,导致幼体运动速度增加。然而,这些 BMP 对幼体的身体发育和心跳行为影响甚微。荧光微塑料示踪实验表明,PBAT-BMPs 在幼鱼体内至少存留 144 小时,并且难以代谢和排泄。我们的研究旨在更好地了解 BMPs 对水生生态系统和生物健康的潜在影响,并提出减少环境污染和保护生物的有效策略。
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来源期刊
Aquatic Toxicology
Aquatic Toxicology 环境科学-毒理学
CiteScore
7.10
自引率
4.40%
发文量
250
审稿时长
56 days
期刊介绍: Aquatic Toxicology publishes significant contributions that increase the understanding of the impact of harmful substances (including natural and synthetic chemicals) on aquatic organisms and ecosystems. Aquatic Toxicology considers both laboratory and field studies with a focus on marine/ freshwater environments. We strive to attract high quality original scientific papers, critical reviews and expert opinion papers in the following areas: Effects of harmful substances on molecular, cellular, sub-organismal, organismal, population, community, and ecosystem level; Toxic Mechanisms; Genetic disturbances, transgenerational effects, behavioral and adaptive responses; Impacts of harmful substances on structure, function of and services provided by aquatic ecosystems; Mixture toxicity assessment; Statistical approaches to predict exposure to and hazards of contaminants The journal also considers manuscripts in other areas, such as the development of innovative concepts, approaches, and methodologies, which promote the wider application of toxicological datasets to the protection of aquatic environments and inform ecological risk assessments and decision making by relevant authorities.
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