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首页> 外文期刊>Toxicological sciences: An official journal of the Society of Toxicology >Glutathione S-Transferase Expression in Pollution-Associated Hepatic Lesions of Brown Bullheads (Ameiurus nebulosus) from the Cuyahoga River, Cleveland, Ohio.
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Glutathione S-Transferase Expression in Pollution-Associated Hepatic Lesions of Brown Bullheads (Ameiurus nebulosus) from the Cuyahoga River, Cleveland, Ohio.

机译:谷胱甘肽S-转移酶在俄亥俄州克利夫兰Cuyahoga河的棕头(Ameiurus nebulosus)污染相关的肝病变中的表达。

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摘要

In rodents, overexpression of glutathione S-transferase pi is a characteristic feature of foci of cellular alteration (FCA) and neoplastic liver lesions induced by genotoxic chemicals. Alterations of glutathione S-transferase (GST) expression in hepatic lesions have also been reported in fish exposed to environmental carcinogens, and cellular GST expression may be an important determinant of growth and progression of chemical-associated liver tumors in certain fish species. In the present study, GST expression was examined in hepatic lesions of brown bullheads (n = 44) from the Cuyahoga River, a highly industrialized site located in Cleveland, Ohio. GST proteins were detected by immunohistochemistry and polyclonal antibodies that recognize either two major bullhead GST proteins or a pi-like GST isoform. Hepatic lesions were present in 70% of the fish and included biliary hyperplasia and biliary fibrosis; eosinophilic, basophilic, clear cell, and vacuolated FCA; and biliary neoplasms. Eosinophilic FCA and biliary tumors were the most prevalent preneoplastic and neoplastic lesions. GST expression in hyperplastic biliary tissue, FCA and tumors did not markedly differ from that of surrounding normal hepatocytes or biliary epithelium. Some hepatocytes within eosinophilic FCA had decreased GST expression. A complete absence of GST immunoreactive protein was not observed in any lesion, and there were no marked differences when comparing GST pi to overall GST expression. Our results indicate that GST expression in hepatic lesions of brown bullhead exposed to environmental carcinogens does not significantly differ from that in surrounding normal cells and is therefore not a useful predictor of environmental carcinogenesis in this species. Furthermore, the regulation and expression of GST pi in bullhead hepatocarcinogenesis appears to differ markedly from that during hepatocarcinogenesis in rats and some other fish species.
机译:在啮齿动物中,谷胱甘肽S-转移酶pi的过表达是遗传毒性化学物质诱导的细胞变化灶(FCA)和肿瘤性肝病灶的特征。在暴露于环境致癌物的鱼类中,肝损伤中谷胱甘肽S-转移酶(GST)表达的变化也已有报道,细胞GST表达可能是某些鱼类中化学相关性肝肿瘤生长和进展的重要决定因素。在本研究中,检查了位于俄亥俄州克利夫兰的高度工业化的Cuyahoga河的棕色bull鱼(n = 44)的肝病变中的GST表达。通过免疫组织化学和多克隆抗体检测GST蛋白,该抗体识别两种主要的牛头GST蛋白或pi样GST亚型。 70%的鱼类中存在肝损害,包括胆道增生​​和胆道纤维化。嗜酸性,嗜碱性,透明细胞和空泡FCA;和胆道肿瘤。嗜酸性FCA和胆道肿瘤是最普遍的肿瘤前和肿瘤性病变。增生性胆管组织,FCA和肿瘤中的GST表达与周围正常肝细胞或胆道上皮的GST表达无明显差异。嗜酸性FCA内的一些肝细胞GST表达降低。在任何病变中均未观察到完全不存在GST免疫反应蛋白,并且在将GST pi与总GST表达进行比较时没有显着差异。我们的结果表明,暴露于环境致癌物的褐头牛肝损伤中GST的表达与周围正常细胞中的GST表达没有显着差异,因此不是该物种中环境致癌作用的有用预测因子。此外,GST pi在牛头肝癌发生过程中的调控和表达看来与大鼠和某些其他鱼类的肝癌发生过程中的调控显着不同。

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