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淡水硬骨鱼斑鳢的大脑(视顶盖)在急性和亚慢性接触杀虫剂毒死蜱后的组织病理学变化。

Histopathological alterations in the brain (optic tectum) of the fresh water teleost Channa punctatus in response to acute and subchronic exposure to the pesticide Chlorpyrifos.

作者信息

Mishra Abha, Devi Yogita

机构信息

Department of Applied Animal Sciences, Babasaheb Bhimrao Ambedkar University, Vidya Vihar, Raebareli Road, Lucknow 226025, India.

Department of Applied Animal Sciences, Babasaheb Bhimrao Ambedkar University, Vidya Vihar, Raebareli Road, Lucknow 226025, India.

出版信息

Acta Histochem. 2014 Jan;116(1):176-81. doi: 10.1016/j.acthis.2013.07.001. Epub 2013 Aug 13.

Abstract

In the present investigation an attempt was made to assess the toxicity of the organophosphate pesticide Chlorpyrifos (0,0-diethyl-0-3,5,6-trichloro-2-pyridyl phosphorothioate; CPF) on the brain (optic tectum) of the teleost Channa punctatus (Bloch). Fish were exposed to acute (1.5, 3.0, 4.5, 6.0 and 7.5 μl/l) for 24 h and sublethal concentrations of CPF 1.79 μl/l (1/3 of LC₅₀) and 0.538 μl/l (1/10 of LC₅₀) for 3 and 7 days respectively. Several endpoints related to the histoarchitectural profile in the optic tectum were evaluated. Histological examination showed detachment in the superficial zone of the Stratum opticum, Str. marginale due to degeneration of neuronal cells. Spongiosis, congestion, necrosis and appearance of clear areas around the nucleus of mononuclear cells in the lining of the Str. fibrosum grisium superficiale, Str. griseum centrale, Str. album centrale were seen. Granular cells found in the innermost layer of optic tectum, i.e. the Str. periventriculare, were severely degenerated and vacuolized and they migrated toward the Torus semicircularis. The histopathological changes were more pronounced with higher concentrations of CPF. The degree of neurodegeneration found in the deep layers of the optic tectum in higher concentration treatment (6.0 and 7.5 μl/l) was more pronounced. These alterations of the optic tectum affected the functioning of motor coordination of the fish body, because CPF inhibited acetylcholine in neuronal synapses. Due to apoptosis in the superficial zone of the optic tectum, normal visual response was affected. Fish showed microphthalmia (reduced size and eye shrinkage in the eye orbit) because of detachment, necrosis, degeneration and vacuolization in different regions after CPF treatment. This study shows that CPF is highly toxic to fish and affect their population survival in environment.

摘要

在本研究中,尝试评估有机磷农药毒死蜱(0,0 - 二乙基 - 0 - 3,5,6 - 三氯 - 2 - 吡啶基硫代磷酸酯;CPF)对硬骨鱼斑鳢(Bloch)大脑(视顶盖)的毒性。将鱼暴露于急性浓度(1.5、3.0、4.5、6.0和7.5 μl/l)下24小时,以及分别在亚致死浓度1.79 μl/l(LC₅₀的1/3)和0.538 μl/l(LC₅₀的1/10)下暴露3天和7天。评估了与视顶盖组织架构轮廓相关的几个终点指标。组织学检查显示,由于神经细胞变性,视层、缘层的表层区域出现脱离。在浅纤维灰质层、中央灰质层、中央白质层的衬里中可见海绵样变、充血、坏死以及单核细胞核周围出现清亮区域。在视顶盖最内层即室周层发现的颗粒细胞严重变性并空泡化,它们向半规管隆凸迁移。CPF浓度越高,组织病理学变化越明显。在高浓度处理组(6.0和7.5 μl/l)中,视顶盖深层发现的神经变性程度更明显。视顶盖的这些改变影响了鱼体运动协调功能,因为CPF抑制了神经突触中的乙酰胆碱。由于视顶盖表层区域的细胞凋亡,正常视觉反应受到影响。CPF处理后,不同区域出现脱离、坏死、变性和空泡化,鱼表现出小眼症(眼睛尺寸减小且眼眶内眼球萎缩)。本研究表明,CPF对鱼类具有高毒性,并影响其在环境中的种群生存。

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