首页> 外文期刊>Reviews in Fish Biology and Fisheries >Expression of a highly differentiated phenotype and hepatic functionality markers in gilthead seabream (Sparus aurata L.) long-cultured hepatocytes: first morphological and functional in vitro characterization
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Expression of a highly differentiated phenotype and hepatic functionality markers in gilthead seabream (Sparus aurata L.) long-cultured hepatocytes: first morphological and functional in vitro characterization

机译:高分化表型和肝功能标记在长头鲷(Sparus aurata L.)长期培养的肝细胞中的表达:首次形态学和功能性体外表征

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The development of primary cultures and cell lines from aquatic organisms is a valuable tool for a wide range of research activities applied to aquaculture. Despite several efforts, derivation and long-term culturing of primary hepatocytes from marine vertebrates are still rare and unsuccessful. This is the first report to fully characterize long-term cultures of primary hepatocytes from the European seabream, Sparus aurata L. (Osteichthyes, Sparidae) (SaHePs). In this new model, hepatocyte cells were long-term viable, active proliferating, and fully retained liver function up to 3 weeks. SaHePs expressed a differentiated phenotype, owing to the reacquisition of the peculiar cytoarchitecture with the complete assembly of cytoskeletal and junctional network, as shown by the production and immunolocalization of several polarity markers and cytoskeletal proteins (MDR1, ZO-2, C-CAM1, Vimentin, Cadherin, beta-Tubulin, beta-Catenin, beta-Actin). Cytostructural analysis to identify polarized expression and bile canaliculi formation was performed by immunofluorescence and contrast phase microscopy. Long cultured SaHePs also demonstrated evidence of Albumin, alpha 1-Antitrypsin (AAT) and alpha-Fetoprotein (AFP) synthesis, expression of the detoxifying metabolic enzyme cytochrome P-4501A (CYP 1A), and production of hepatocyte specific cytoskeleton proteins, such as Cytokeratin 8 (CK8) and Cytokeratin 18 (CK 18). The presence of specific markers for hepatic phenotype, detected by immunocytochemistry and Western blot analysis, is suggestive of the full maintenance of a highly differentiated phenotype and hepatic maturation. These data demonstrate that SaHePs can be long cultured without losing the hepatic functionality. This study provides a useful tool for innovative research applications in fish toxicological, pathological, and physiological studies, as one of the few hepatic, functionally active, in vitro model from marine fish.
机译:来自水生生物的原始培养物和细胞系的开发是用于水产养殖的广泛研究活动的宝贵工具。尽管付出了许多努力,但从海洋脊椎动物中衍生和长期培养原代肝细胞仍然很少见,但仍未成功。这是第一份全面表征欧洲海鲷Sparus aurata L.(Osteichthyes,Sparidae)(SaHePs)的原代肝细胞长期培养特征的报告。在这种新模型中,肝细胞可以长期存活,活跃地增殖,并在3周内完全保留肝功能。 SaHePs表现出分化的表型,这是由于重新获得了特殊的细胞结构,并完整地组装了细胞骨架和连接网络,如几种极性标记和细胞骨架蛋白(MDR1,ZO-2,C-CAM1,Vimentin ,钙黏着蛋白,β-胎蛋白,β-连环蛋白,β-肌动蛋白)。通过免疫荧光和对比相显微镜进行细胞结构分析,以鉴定极化表达和胆小管的形成。长期培养的SaHePs还证明了白蛋白,α1-抗胰蛋白酶(AAT)和α-甲胎蛋白(AFP)的合成,解毒代谢酶细胞色素P-4501A(CYP 1A)的表达以及肝细胞特异性细胞骨架蛋白(例如细胞角蛋白8(CK8)和细胞角蛋白18(CK 18)。通过免疫细胞化学和Western印迹分析检测到的肝表型特异性标志物的存在,暗示了高度分化的表型和肝成熟的完全维持。这些数据表明,SaHePs可以长期培养而不会失去肝功能。这项研究为鱼类毒理学,病理学和生理学研究中的创新研究应用提供了有用的工具,它是海洋鱼类中为数不多的具有肝功能功能的体外模型之一。

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