Effects of mining activities and municipal wastewaters on element accumulation and integrated biomarker responses of the European chub (Squalius cephalus)

IF 5.4 2区 医学 Q2 MATERIALS SCIENCE, BIOMATERIALS ACS Biomaterials Science & Engineering Pub Date : 2024-10-01 DOI:10.1016/j.chemosphere.2024.143385
Dušan Nikolić , Jovana Kostić , Jelena Đorđević Aleksić , Karolina Sunjog , Božidar Rašković , Vesna Poleksić , Slađan Pavlović , Slavica Borković-Mitić , Milena Dimitrijević , Mira Stanković , Ksenija Radotić
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Abstract

This study aimed to determine concentrations of 29 elements in the gills and liver as well as biomarker response in gills, liver, and blood of European chub from Pek River (exposed to long-term mining activities), and to compare these findings with individuals from Ibar River (influenced by emission of treated municipal wastewater) and Kruščica reservoir (source of drinking water) using inductively-coupled plasma optical emission spectrometry (ICP-OES). The metal pollution index (MPI) was also calculated. Supporting analyses for the detection of the municipal wastewater presence at investigated localities included analyses of microbiological indicators (total coliforms and Escherichia coli) of faecal pollution. We have assessed biomarker responses from molecular to organism level using the condition index, comet assay, micronucleus test, oxidative stress parameters, histopathological alterations, and fluorescence spectroscopy parameters. Multibiomarker analysis was summarized by Integrated Biomarker Response v2 (IBRv2). Among these locations, Kruščica exhibited the lowest, whereas the Pek River displayed the highest values for both categories of indicator bacteria. Due to the porphyry copper ores mining, individuals from Pek River had several times higher Cu concentrations in both gills and liver compared to the other localities which was confirmed by biomarker responses and IBRv2 value. On the contrary, fish from Kruščica reservoir were the least affected by elemental pollution which is also confirmed by low MPI and IBRv2 values. Responses of biomarkers correspond to the elemental accumulation in the liver and gills of the Ibar River are positioned between the Pek River and Kruščica reservoir. Of all the biomarkers analyzed in this study, the condition index was the least sensitive. The results of this study showed that fluorescence spectroscopy may be a method for fast screening of structural changes in gills caused by the pollution burden.

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采矿活动和城市废水对欧洲鲢(Squalius cephalus)元素积累和综合生物标志物反应的影响。
本研究旨在利用电感耦合等离子体光发射光谱法(ICP-OES)测定佩克河(长期暴露于采矿活动)欧洲鲢鱼鳃和肝脏中 29 种元素的浓度以及鳃、肝脏和血液中的生物标志物反应,并将这些结果与伊巴尔河(受经处理的城市废水排放的影响)和克鲁什奇察水库(饮用水源)的个体进行比较。此外,还计算了金属污染指数 (MPI)。用于检测调查地点城市污水存在情况的辅助分析包括粪便污染的微生物指标(总大肠菌群和大肠埃希氏菌)分析。我们使用条件指数、彗星试验、微核试验、氧化应激参数、组织病理学改变和荧光光谱参数评估了从分子到生物水平的生物标志物反应。综合生物标志物反应 v2(IBRv2)对多生物标志物分析进行了总结。在这些地点中,克鲁什奇察的两类指示细菌值最低,而佩克河的两类指示细菌值最高。由于斑岩铜矿的开采,佩克河的鱼鳃和肝脏中的铜浓度都比其他地方高出数倍,生物标记反应和 IBRv2 值证实了这一点。相反,克鲁什奇察水库的鱼类受元素污染的影响最小,这也从较低的 MPI 和 IBRv2 值中得到证实。伊巴尔河位于佩克河和克鲁斯奇察水库之间,其生物标志物的反应与元素在肝脏和鳃中的积累相对应。在本研究分析的所有生物标志物中,状态指数的灵敏度最低。这项研究的结果表明,荧光光谱法可能是快速筛查污染负荷导致的鳃结构变化的一种方法。
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来源期刊
ACS Biomaterials Science & Engineering
ACS Biomaterials Science & Engineering Materials Science-Biomaterials
CiteScore
10.30
自引率
3.40%
发文量
413
期刊介绍: ACS Biomaterials Science & Engineering is the leading journal in the field of biomaterials, serving as an international forum for publishing cutting-edge research and innovative ideas on a broad range of topics: Applications and Health – implantable tissues and devices, prosthesis, health risks, toxicology Bio-interactions and Bio-compatibility – material-biology interactions, chemical/morphological/structural communication, mechanobiology, signaling and biological responses, immuno-engineering, calcification, coatings, corrosion and degradation of biomaterials and devices, biophysical regulation of cell functions Characterization, Synthesis, and Modification – new biomaterials, bioinspired and biomimetic approaches to biomaterials, exploiting structural hierarchy and architectural control, combinatorial strategies for biomaterials discovery, genetic biomaterials design, synthetic biology, new composite systems, bionics, polymer synthesis Controlled Release and Delivery Systems – biomaterial-based drug and gene delivery, bio-responsive delivery of regulatory molecules, pharmaceutical engineering Healthcare Advances – clinical translation, regulatory issues, patient safety, emerging trends Imaging and Diagnostics – imaging agents and probes, theranostics, biosensors, monitoring Manufacturing and Technology – 3D printing, inks, organ-on-a-chip, bioreactor/perfusion systems, microdevices, BioMEMS, optics and electronics interfaces with biomaterials, systems integration Modeling and Informatics Tools – scaling methods to guide biomaterial design, predictive algorithms for structure-function, biomechanics, integrating bioinformatics with biomaterials discovery, metabolomics in the context of biomaterials Tissue Engineering and Regenerative Medicine – basic and applied studies, cell therapies, scaffolds, vascularization, bioartificial organs, transplantation and functionality, cellular agriculture
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