In vivo visualization of environmentally relevant microplastics and evaluation of gut barrier damages in Artemia franciscana.

Journal of hazardous materials Pub Date : 2024-10-05 Epub Date: 2024-08-21 DOI:10.1016/j.jhazmat.2024.135596
Jin Il Kwak, Hanju Rhee, Lia Kim, Youn-Joo An
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Abstract

Although irregularly-shaped label-free microplastics (MPs) are predominantly distributed in the environment, non-destructive analysis of environmentally relevant MPs in organisms is still challenging. The purpose of the study is to suggest in vivo visual evidence of the uptake and effect of environmentally relevant MPs in organism. Transparent irregularly-shaped high-density polyethylene was selected as an environmentally relevant model MP and exposed to brine shrimp (Artemia franciscana). As a result, we suggest the application of SEM/EDX and coherent anti-Stokes Raman scattering (CARS) microspectroscopy as complementary tools to secure in vivo visual evidence of irregularly-shaped unlabeled MPs in living organisms without chemical digestion for biodistribution observations. Biological transmission electron microscopy also provides how ingested MPs physically affects the digestive tract in the brine shrimp which is rarely reported. In terms of environmental implications, this study would advance ecotoxicological research on microplastic pollution by providing a cutting-edge tool for investigating the bioavailability and ecotoxicity of environmentally relevant MPs in ecosystems.

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环境相关微塑料的活体可视化以及对法氏鲟肠道屏障损伤的评估。
尽管不规则形状的无标签微塑料(MPs)主要分布在环境中,但对生物体内环境相关 MPs 的非破坏性分析仍具有挑战性。本研究的目的是为环境相关微塑料在生物体内的吸收和影响提供体内视觉证据。我们选择了透明的不规则形状的高密度聚乙烯作为环境相关的模型 MP,并将其暴露于盐水虾(Artemia franciscana)。因此,我们建议应用 SEM/EDX 和相干反斯托克斯拉曼散射(CARS)显微光谱作为互补工具,以确保不规则形状的未标记 MPs 在生物体内的可视化证据,而无需化学消化以进行生物分布观察。生物透射电子显微镜还提供了摄入的多溴联苯醚如何对盐水虾消化道产生物理影响的信息,这一点很少见报道。在环境影响方面,这项研究为调查生态系统中与环境相关的多溴联苯醚的生物利用率和生态毒性提供了一种前沿工具,将推动有关微塑料污染的生态毒理学研究。
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