Gheorghe Stefania, Stan Miruna S, Mitroi Daniel N, Staicu Andrea C, Cicirma Marius, Lucaciu Irina E, Nita-Lazar Mihai, Dinischiotu Anca
National Research and Development Institute for Industrial Ecology (ECOIND), 71-73 Drumul Podu Dambovitei, 060652 Bucharest, Romania.
Department of Biochemistry and Molecular Biology, Faculty of Biology, University of Bucharest, 91-95 Spl. Independentei, 050095 Bucharest, Romania.
Toxics. 2022 Apr 29;10(5):227. doi: 10.3390/toxics10050227.
One cationic surfactant with a wide spectrum of microbiocidal activity is benzethonium chloride (BEC). Despite being widely used, the toxicity data on vertebrate organisms are limited. Therefore, we aimed to evaluate within this study the acute toxicity of BEC on the gills and kidneys of (European carp). An alteration of the antioxidant enzymes activities (glutathione reductase, glutathione peroxidase and glutathione S-transferase) was noticed after 96 h of exposure, along with an elevation of lipid peroxidation and decreased concentration of reduced glutathione, which confirmed that BEC was able to induce toxicity to these tissues. These metabolic effects were correlated with unspecific structural changes observed in gills and kidneys, having moderate degree of severity (such as an increase of melanomacrophages aggregation incidence and cytoplasm vacuolation of goblet cells in collecting tubules) and generally being compatible with life for the exposure time studied. The most severe structural effects were observed in gills after 96 h, noticing a lamellar aneurysm, hemorrhages and lamellar epithelium disruption due to the blood vessels and pillar cells damages and increased blood flow inside the lamellae. By our research we can confirm the utility of biochemical and histological analyses in the fish organs as tools for monitoring the water quality and ecotoxicological potential of chemicals.
一种具有广泛杀菌活性的阳离子表面活性剂是苄索氯铵(BEC)。尽管它被广泛使用,但关于脊椎动物的毒性数据有限。因此,我们在本研究中旨在评估BEC对欧洲鲤鱼鳃和肾脏的急性毒性。暴露96小时后,观察到抗氧化酶活性(谷胱甘肽还原酶、谷胱甘肽过氧化物酶和谷胱甘肽S-转移酶)发生改变,同时脂质过氧化增加,还原型谷胱甘肽浓度降低,这证实BEC能够对这些组织诱导毒性。这些代谢效应与在鳃和肾脏中观察到的非特异性结构变化相关,这些变化具有中等程度的严重性(例如黑素巨噬细胞聚集发生率增加以及集合小管中杯状细胞的细胞质空泡化),并且在所研究的暴露时间内通常与生命相容。96小时后在鳃中观察到最严重的结构效应,注意到由于血管和支柱细胞损伤以及鳃小片内血流增加导致的鳃小片动脉瘤、出血和鳃小片上皮破坏。通过我们的研究,我们可以确认鱼类器官中的生化和组织学分析作为监测水质和化学品生态毒理学潜力工具的实用性。