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引用本文:张莹莹,梁雪梅,曾文刚,张俊彬.金钱鱼肾细胞系的建立及生长特性研究.海洋与湖沼,2014,45(3):651-656.
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金钱鱼肾细胞系的建立及生长特性研究
张俊彬,张莹莹
上海海洋大学,上海海洋大学
摘要:
金钱鱼(Scatophagus argus)是一种重要的广盐性海水养殖鱼类, 可直接在海水、淡水、咸淡水等不同环境中正常生长。为研究金钱鱼独特的渗透调节机制, 本文研究了金钱鱼肾细胞的原代和传代条件及其生长特性, 结果表明: 原代肾细胞在含有20%胎牛血清(FBS)的L-15 培养基里贴壁和生长较好, 添加10 ng/mL 的碱性成纤维细胞因子(basic fibroblast growth factor) bFGF 能明显促进细胞增殖, 传代细胞采用含有10%胎牛血清的L-15 培养基, 细胞生长迅速, 3-4d 即可传代。金钱鱼肾细胞为成纤维样细胞, 命名为SK 细胞, 目前已传至22 代。扩增第11 代SK 细胞的细胞色素氧化酶I(COI)基因, 比对结果证明此细胞系来源于金钱鱼。采用CCK-8 法检测第12 代细胞在低渗(95, 137,200 mmol/kg), 等渗(330 mmol/kg) 和高渗(430, 550 mmol/kg) 中的增殖情况, 结果发现肾细胞在137-430 mm/kg 的渗透压范围内均可增殖, 说明金钱鱼肾细胞对渗透压的耐受性较强。本试验首次建立了金钱鱼肾细胞系, 并初步证明了肾细胞对盐度有较强的耐受性, 为今后渗透压调节的深入研究奠定了基础。
关键词:  金钱鱼  肾细胞系  原代培养  传代培养  渗透压调节
DOI:10.11693/hyhz20130131001
分类号:
基金项目:国家科技部 “十二五”“科技支撑计划”, 2011BAD13B00 号; 国家自然科学基金项目, 41176109 号
附件
ESTABLISHMENT AND CHARACTERIZATION OFA NEW EURYHALINE FISH KIDNEY CELL LINE OF SPOTTED SCAT SCATOPHAGUS ARGUS
zhang jun bin and zhang ying ying
Shanghai Ocean University,Shanghai Ocean University
Abstract:
Spotted scat Scatophagus argus is a euryhaline fish and they could live in seawater, freshwater, or brackish water. We established and characterized a new kidney cell line (SK) of the fish, and successfully subcultured SK to the 22th generations at present. The results showed that the primary cells grew well in L-15 medium with 20% fetal bovine serum (FBS), and adding 10 ng/mL basic fibroblast growth factor (bFGF) could increase significantly the growth rate. Subcultured cells were maintained in L-15 medium with 10% FBS and could be passaged in 3-4 days. SK cells were observed fibroblastic. PCR amplification of l cytochrome oxidase subunit I (COI) for the cells of 11th generation confirmed the origin of this cell line. The CCK-8 method was used to detect the proliferation rate for the twelfth SK cells in hypotonic (95, 137, 200 mmol/kg), isotonic (330 mmol/kg), and hypertonic (430, 550 mmol/kg) conditions. Therefore, the SK cells were able to proliferate in the wide range from 137 to 430 mm/kg osmotic pressure.
Key words:  Scatophagus argus  kidney cell line  primary culture  subculture  osmoregulation
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