Enhanced bioaccumulation and toxicity of Fenpropathrin by polystyrene nano(micro)plastics in the model insect, silkworm (Bombyx mori).

IF 12.6 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal of Nanobiotechnology Pub Date : 2025-01-23 DOI:10.1186/s12951-025-03120-8
Abrar Muhammad, Zhaoyi Qian, Yu Li, Xiaoyu Lei, Junaid Iqbal, Xiaoqiang Shen, Jintao He, Nan Zhang, Chao Sun, Yongqi Shao
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Abstract

Background: Nano(micro)plastics (NMPs) and agrochemicals are ubiquitous pollutants. The small size and physicochemical properties of NMPs make them potential carriers for pollutants, affecting their bioavailability and impact on living organisms. However, little is known about their interactions in terrestrial ecosystems. This study investigates the adsorption of Fenpropathrin (FPP) onto two different sizes of polystyrene NMPs and examines their impacts on an insect model, silkworm Bombyx mori. We analyzed the systemic effects of acute exposure to NMPs and FPP, individually and combined, at organismal, tissue, cellular, and gut microbiome levels.

Results: Our results showed that NMPs can adsorb FPP, with smaller particles having higher adsorption capacity, leading to size-dependent increases in the bioaccumulation and toxicity of FPP. These effects led to higher mortality, reduced body weight, delayed development, and decreased cocoon production in silkworms. Additionally, the pollutants caused physical and oxidative damage to the midgut and altered gene expression related to juvenile hormone (JH) and silk protein synthesis. The gut microbiome analysis revealed significant changes and reduced abundance of potentially beneficial bacteria. Thus, the aggravated toxicity induced by NMPs was size-dependent, with smaller particles (NPs) having a greater impact.

Conclusions: This study demonstrates the role of NMPs as carriers for contaminants, increasing their bioavailability and toxicity in terrestrial ecosystems. These findings have significant implications for ecosystem health and biodiversity.

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聚苯乙烯纳米(微)塑料增强甲氰菊酯在模式昆虫家蚕体内的生物蓄积和毒性。
背景:纳米(微)塑料和农用化学品是普遍存在的污染物。纳米颗粒的小尺寸和物理化学性质使其成为污染物的潜在载体,影响其生物利用度和对生物体的影响。然而,人们对它们在陆地生态系统中的相互作用知之甚少。本研究研究了甲氰菊酯(FPP)在两种不同尺寸的聚苯乙烯nmp上的吸附,并研究了它们对昆虫模型家蚕的影响。我们分析了急性暴露于nmp和FPP对机体、组织、细胞和肠道微生物组水平的系统影响,无论是单独的还是联合的。结果:我们的研究结果表明,NMPs可以吸附FPP,颗粒越小,吸附能力越强,导致FPP的生物积累和毒性随粒径的增加而增加。这些影响导致家蚕死亡率升高、体重减轻、发育迟缓和产茧减少。此外,污染物对中肠造成了物理和氧化损伤,并改变了与幼体激素(JH)和丝蛋白合成相关的基因表达。肠道微生物组分析显示了显著的变化和潜在有益细菌丰度的减少。因此,nmp诱导的毒性加重具有大小依赖性,较小的颗粒(NPs)具有更大的影响。结论:本研究证明了nmp作为污染物载体的作用,增加了它们在陆地生态系统中的生物利用度和毒性。这些发现对生态系统健康和生物多样性具有重要意义。
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来源期刊
Journal of Nanobiotechnology
Journal of Nanobiotechnology BIOTECHNOLOGY & APPLIED MICROBIOLOGY-NANOSCIENCE & NANOTECHNOLOGY
CiteScore
13.90
自引率
4.90%
发文量
493
审稿时长
16 weeks
期刊介绍: Journal of Nanobiotechnology is an open access peer-reviewed journal communicating scientific and technological advances in the fields of medicine and biology, with an emphasis in their interface with nanoscale sciences. The journal provides biomedical scientists and the international biotechnology business community with the latest developments in the growing field of Nanobiotechnology.
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