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评估几种淡水鱼的生化生物标志物和环境应激指标。

Assessment of biochemical biomarkers and environmental stress indicators in some freshwater fish.

机构信息

Center of Excellence for Toxicological Testing, Department of Mammalian and Aquatic Toxicology, Central Agricultural Pesticides Lab (CAPL), Agricultural Research Center (ARC), Dokki, Egypt.

Department of Hygiene and Veterinary Care, Faculty of Veterinary Medicine, Benha University, Toukh, 13736, Egypt.

出版信息

Environ Geochem Health. 2024 Oct 3;46(11):464. doi: 10.1007/s10653-024-02226-6.

Abstract

The mechanism by which an organism can adapt to subtle environmental changes is predicated on modifications to biochemical processes within the cellular metabolism in response to such changes. Changes in these processes have the potential to induce alterations in cellular structures and tissue organization, as well as establish a causal link between fluctuations in these parameters and stressors exposure. This investigation's main goal and innovation is to evaluate the environmental stress indicators in the aquatic ecosystem of Lake Qarun. Pesticide residues in freshwater fish should be the primary focus of evaluation of environmental stressor concentrations, since they serve as bioindicators at different times and places on a spatiotemporal scale. A thorough analysis of suggestive biochemical biomarker reactions should also be conducted. The effects of environmental stressors, specifically pesticide contamination in Qarun Lake, have been observed and investigated in relation to two fish species: Solea aejabtiaca and Oreochronis niloticus. The results of a hazard assessment conducted at six sampling sites using spatio-temporal data revealed elevated mean values for the pesticides, persistent organic pollutants (POPs), organochlorines, organophosphates, and pyrethroids that were detected. A multi biomarker approach facilitates a more comprehensive understanding of stress responses induced by exposure to pollutants. As a result, the activities of the biochemical biomarkers CYP-450, GST, GSH, and LDH in the blood and liver of fish samples were found to be notably elevated. The suitability of the identified variables for biomonitoring of aquatic pollution was validated, and the data unveiled variations in sensitivity among species, implying that Nile tilapia could potentially function as a bioindicator with high sensitivity. The findings were correlated with the concentrations of detrimental organochlorines, organophosphorus, and pyrethroids in the muscles and gills. The data indicates that pollutants linked to agricultural wastes, runoff, and municipal effluent may be discharged into the lake ecosystem. Consequently, to safeguard the environment, it is essential to enforce and implement policies, acts, and regulations that already exist. Assessing the effects of additional environmental stressors on aquatic ecosystems is another way in which biomarker screening with an integrative approach improves our comprehension of how toxicants impact various levels of biological organization and is particularly useful in realistic environmental exposure scenarios.

摘要

生物体适应微妙环境变化的机制是基于细胞代谢中的生化过程的改变,以应对这些变化。这些过程的变化有可能导致细胞结构和组织组织的改变,并在这些参数的波动与应激暴露之间建立因果关系。本研究的主要目标和创新之处在于评估卡伦湖的水生生态系统中的环境应激指标。在评价环境应激物浓度时,淡水鱼类中的农药残留应成为主要关注点,因为它们在时空尺度上的不同时间和地点充当生物指标。还应进行对提示性生化生物标志物反应的彻底分析。应观察和研究环境应激物,特别是卡伦湖中农药污染对两种鱼类的影响:Solea aejabtiaca 和 Oreochronis niloticus。使用时空数据在六个采样点进行的危害评估结果显示,检测到的农药、持久性有机污染物 (POPs)、有机氯、有机磷和拟除虫菊酯的平均浓度升高。多生物标志物方法有助于更全面地了解暴露于污染物引起的应激反应。因此,发现鱼样本血液和肝脏中的生化生物标志物 CYP-450、GST、GSH 和 LDH 的活性显著升高。验证了所识别变量用于水生污染生物监测的适用性,并揭示了物种之间敏感性的变化,这意味着尼罗罗非鱼可能具有作为高灵敏度生物标志物的潜力。研究结果与肌肉和鳃中有害有机氯、有机磷和拟除虫菊酯的浓度相关。数据表明,与农业废物、径流和城市污水有关的污染物可能被排放到湖泊生态系统中。因此,为了保护环境,必须执行和实施现有的政策、法案和法规。通过采用综合方法进行生物标志物筛选,评估额外环境应激物对水生生态系统的影响,这是另一种方法,可以提高我们对毒物如何影响不同层次生物组织的理解,特别是在现实环境暴露场景中非常有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d8e/11449979/b21189632911/10653_2024_2226_Fig1_HTML.jpg

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