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二苯甲酮对……组织病理学毒性作用的评估

Evaluation of toxic effects of benzophenone on histopathology of .

作者信息

Riaz Maham, Abdullah Sajid, Jamil Mina, Rasheed Amna, Sheikh Urwah, Fatima Maham, Umer Nimra, Aslam Kaynat

机构信息

Department of Zoology, Wildlife & Fisheries, University of Agriculture, Faisalabad, Pakistan.

出版信息

Toxicol Rep. 2025 Jan 14;14:101914. doi: 10.1016/j.toxrep.2025.101914. eCollection 2025 Jun.

Abstract

Benzophenone (BP) is an organic ultraviolet (UV) filter widely used in sunscreens and personal care products. This compound enters aquatic ecosystems due to industrialization, wastewater treatment plants (WWTPs), and domestic effluents, poses serious threats to aquatic organisms, and is considered an emerging pollutant. This laboratory-based study assessed the 96-hour (h) median lethal concentrations (LC) and sub-lethal effects of BP on the histology of the gills and muscles of . Fish fingerlings of the same weight (48 ± 2 g) and length (5 ± 2 in.) were exposed to gradually increasing concentrations of BP (100 µg/L to 1000 µg/L) and their 96-h LC was determined as 612.822 ± 37.38 µg/L. To determine the sub-lethal effects, the fish were exposed to 1/5th of the 96-h LC of BP for 35 days (d) to investigate organ-specific responses. The results indicated significant damage to the exposed organs and showed damage in pillar cells and intraluminal debris in gill mucous cells. Moreover, fragmentation of intact muscle structures, intraluminal debris, and vascular necrosis were observed in exposed muscles In conclusion, these results confirmed the histopathological changes in the gills and muscles of caused by BP exposure, thereby confirming its risk to aquatic life.

摘要

二苯甲酮(BP)是一种有机紫外线(UV)过滤剂,广泛用于防晒霜和个人护理产品中。由于工业化、污水处理厂(WWTPs)和生活污水排放,这种化合物进入水生生态系统,对水生生物构成严重威胁,被视为一种新兴污染物。这项基于实验室的研究评估了BP对[鱼名]鳃和肌肉组织学的96小时(h)半数致死浓度(LC)和亚致死效应。将体重相同(48±2克)、体长相同(5±2英寸)的鱼苗暴露于逐渐增加浓度的BP(100μg/L至1000μg/L)中,其96小时LC测定为612.822±37.38μg/L。为了确定亚致死效应,将鱼暴露于BP的96小时LC的五分之一浓度下35天(d),以研究器官特异性反应。结果表明,暴露的器官受到了显著损伤,鳃黏液细胞中的柱状细胞和管腔内碎片出现损伤。此外,在暴露的肌肉中观察到完整肌肉结构的碎片化、管腔内碎片和血管坏死。总之,这些结果证实了BP暴露导致[鱼名]鳃和肌肉的组织病理学变化,从而证实了其对水生生物的风险。

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