Polystyrene nanoplastics alter the ecotoxicological effects of diclofenac on freshwater microalgae Scenedesmus obliquus†

IF 5.4 3区 材料科学 Q2 CHEMISTRY, PHYSICAL ACS Applied Energy Materials Pub Date : 2023-11-02 DOI:10.1039/D3EM00341H
Abisha Christy Christudoss, Natarajan Chandrasekaran and Amitava Mukherjee
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Abstract

Due to the escalating risk of plastic pollution, nanoplastics have attracted considerable attention in the recent past. They can co-exist and interact with other contaminants like pharmaceuticals in the aquatic environment. Therefore, it is pertinent to understand how these pollutants interact with one another in the ecosystem. The current study examined the individual and combined effects of fluorescent polystyrene nanoplastics (FNPs) and diclofenac (DCF) on Scenedesmus obliquus using a full factorial design. The toxicity of S. obliquus significantly increased in a dose-dependent manner upon exposure to pristine forms of DCF and FNPs. The major cause of individual toxicity of DCF and FNPs in S. obliquus was oxidative stress. In the combined toxicity tests when FNPs (0.01, 0.1, and 1 mg L−1) and DCF (1 mg L−1) were mixed, a synergistic effect was noted compared to the respective pristine FNPs. However, when the DCF concentration in the mixture was decreased to 0.25 mg L−1, the combined toxicity with FNPs (0.01, 0.1, and 1 mg L−1) reduced indicating an antagonistic effect. The independent action model also showed an antagonistic effect for low-dose combinations of DCF and a synergistic effect for high-dose combinations. The estimation of oxidative stress parameters, antioxidant enzyme activity, and photosynthetic pigment content in the algae further validated the cytotoxicity data. The mean hydrodynamic diameter and surface charge analyses further indicated that the colloidal stability of the FNPs in the medium was affected when they were combined with DCF. The key reason for differences in the cytotoxicity of combinations could be observed variations in the aggregation of FNPs and differential adsorption patterns of DCF on the FNPs. These factors efficiently altered cell–particle interactions in the mixture demonstrating a hormesis effect. Thus, this current study highlighted the hazardous nature of the nanoplastics and their co-exposure risks with pharmaceuticals on microalgae in freshwater environments.

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聚苯乙烯纳米塑料改变了双氯芬酸对淡水微藻Scenedesmus obliquus†的生态毒理学效应
由于塑料污染的风险不断上升,纳米塑料在最近引起了广泛关注。在水生环境中,纳米塑料可与其他污染物(如药物)共存并相互作用。因此,了解这些污染物如何在生态系统中相互影响至关重要。本研究采用全因子设计,考察了荧光聚苯乙烯纳米塑料(FNPs)和双氯芬酸(DCF)对斜管藻的单独和联合影响。在暴露于原始形式的 DCF 和 FNPs 时,钝鳞藻的毒性以剂量依赖的方式显著增加。氧化应激是 DCF 和 FNPs 对斜管水母产生单独毒性的主要原因。在 FNPs(0.01、0.1 和 1 毫克/升-1)和 DCF(1 毫克/升-1)混合毒性试验中,与各自的原始 FNPs 相比,发现了协同效应。然而,当混合物中的 DCF 浓度降至 0.25 mg L-1 时,与 FNPs(0.01、0.1 和 1 mg L-1)的联合毒性降低,这表明存在拮抗作用。独立作用模型也显示,DCF 的低剂量组合具有拮抗作用,而高剂量组合则具有协同作用。对藻类中氧化应激参数、抗氧化酶活性和光合色素含量的估计进一步验证了细胞毒性数据。平均流体力学直径和表面电荷分析进一步表明,当 FNPs 与 DCF 合用时,它们在培养基中的胶体稳定性会受到影响。造成不同组合的细胞毒性差异的关键原因可能是观察到的 FNPs 的聚集变化和 DCF 在 FNPs 上的不同吸附模式。这些因素有效地改变了混合物中细胞与粒子之间的相互作用,显示出一种激素效应。因此,本研究强调了纳米塑料的危险性及其与药物共同暴露于淡水环境中微藻类的风险。
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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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