水生生态系统中化学污染物和环境胁迫诱发的致畸效应综述。

Q1 Environmental Science Toxicology Reports Pub Date : 2024-11-19 eCollection Date: 2024-12-01 DOI:10.1016/j.toxrep.2024.101819
S Madesh, Sanjai Gopi, Avra Sau, Rajakrishnan Rajagopal, S Karthick Raja Namasivayam, Jesu Arockiaraj
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引用次数: 0

摘要

水生环境,包括海洋和淡水生态系统,对生态平衡和生物多样性至关重要。全球对水产养殖产品的需求不断增长,因此必须提高产量,而强化水产养殖的做法会带来巨大的环境风险。本综述探讨了化学污染物、重金属、药物和环境压力因素对水生物种产生致畸效应的途径。综述强调了杀虫剂(包括三嗪类除草剂、有机磷和有机氯杀虫剂以及氨基甲酸酯类杀虫剂)对水生生物的影响,强调了它们对内分泌系统和发育过程的干扰。汞、铅、镉、砷和铬等重金属因其持久性和生物累积性而受到关注,它们会干扰细胞和荷尔蒙功能。药物,包括非甾体抗炎药、抗生素和化疗药物,通过干扰生理和发育途径产生致畸效应。包括温度波动、盐度变化、酸碱度变化和氧含量失衡在内的环境压力因素会加剧污染物的致畸影响。这篇综述强调了综合环境管理的重要性,了解这些复杂的相互作用对于制定有效的战略,采取有效措施保护水生生态系统和生物多样性至关重要。
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Chemical contaminants and environmental stressors induced teratogenic effect in aquatic ecosystem - A comprehensive review.

Aquatic environments, including marine and freshwater ecosystems, are vital for ecological balance and biodiversity. The rising global demand for aquaculture products necessitates increased production, with intensified aquaculture practices posing significant environmental risks. This review explores the pathways through which chemical pollutants, heavy metals, pharmaceuticals, and environmental stressors induce teratogenic effects in aquatic species. The review highlights the impact of pesticide include triazine herbicides, organophosphate and organochlorine insecticides, and carbamates on aquatic life, emphasizing their interference with endocrine systems and developmental processes. Heavy metals like mercury, lead, cadmium, arsenic, and chromium are noted for their persistence and bioaccumulative properties, disrupting cellular and hormonal functions. Pharmaceuticals, including NSAIDs, antibiotics, and chemotherapeutic agents, exert teratogenic effects by disrupting physiological and developmental pathways. Environmental stressors includes temperature fluctuations, salinity variations, pH changes, and oxygen level imbalances exacerbate the teratogenic impact of pollutants. This review highlights the importance of comprehensive environmental management and understanding these complex interactions is essential for formulating efficient strategies to safeguard the effective measures to protect aquatic ecosystems and the biodiversity.

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来源期刊
Toxicology Reports
Toxicology Reports Environmental Science-Health, Toxicology and Mutagenesis
CiteScore
7.60
自引率
0.00%
发文量
228
审稿时长
11 weeks
期刊最新文献
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