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同暴露于纳米材料和β受体阻滞剂类药物对非靶标大型水生植物浮萍的联合毒理学效应。

Toxicological effects resulting from co-exposure to nanomaterials and to a β-blocker pharmaceutical drug in the non-target macrophyte species Lemna minor.

机构信息

Faculdade de Tecnologia, Universidade Estadual de Campinas, Campus De Limeira, Limeira, Brazil.

Eurofins Agroscience Services Regulatory Spain SL, Sorolla Center, Valência, Espanha.

出版信息

Environ Pollut. 2023 Apr 1;322:121166. doi: 10.1016/j.envpol.2023.121166. Epub 2023 Feb 2.

Abstract

The wide use of carbon-based materials for various purposes leads to their discharge in the aquatic systems, and simultaneous occurrence with other environmental contaminants, such as pharmaceutical drugs. This co-occurrence can adversely affect exposed aquatic organisms. Up to now, few studies have considered the simultaneous toxicity of nanomaterials, and organic contaminants, including pharmaceutical drugs, towards aquatic plants. Thus, this study aimed to assess the toxic effects of the co-exposure of propranolol (PRO), and nanomaterials based on cellulose nanocrystal, and graphene oxide in the aquatic macrophyte Lemna minor. The observed effects included reduction of growth rate in 13% in co-exposure 1 (nanomaterials + PRO 5 μg L), and 52-64% in co-exposure 2 (nanomaterials + PRO 51.3 mg L), fresh weight reduction of 94-97% in co-exposure 2 compared to control group, and increased pigment production caused by co-exposure treatments. The analysis of PCA showed that co-exposure 1 (nanomaterials + PRO 5 μg L) positively affected growth, and fresh weight, and co-exposure 2 positively affected pigments content. The results suggested that the presence of nanomaterials enhanced the overall toxicity of PRO, exerting deleterious effects in the freshwater plant L. minor, suggesting that this higher toxicity resulting from co-exposure was a consequence of the interaction between nanomaterials and PRO.

摘要

由于各种目的广泛使用碳基材料,导致它们在水生系统中排放,并且与其他环境污染物(如药物)同时发生。这种共存可能会对暴露的水生生物产生不利影响。到目前为止,很少有研究考虑纳米材料和有机污染物(包括药物)对水生植物的同时毒性。因此,本研究旨在评估普萘洛尔(PRO)和基于纤维素纳米晶体和氧化石墨烯的纳米材料在水生植物浮萍中的共暴露的毒性效应。观察到的影响包括共暴露 1(纳米材料+PRO5μg/L)中生长率降低 13%,共暴露 2(纳米材料+PRO51.3mg/L)中降低 52-64%,与对照组相比,共暴露 2 中鲜重降低 94-97%,并且共暴露处理导致色素产生增加。PCA 分析表明,共暴露 1(纳米材料+PRO5μg/L)对生长和鲜重有积极影响,共暴露 2 对色素含量有积极影响。结果表明,纳米材料的存在增强了 PRO 的整体毒性,对淡水植物浮萍产生有害影响,表明这种更高的毒性是纳米材料和 PRO 之间相互作用的结果。

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