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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Proteomic evaluation of cell preparation methods in primary hepatocyte cell culture
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Proteomic evaluation of cell preparation methods in primary hepatocyte cell culture

机译:在原代肝细胞培养中细胞制备方法的蛋白质组学评估

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In vitro liver preparations are being used increasingly to study various aspects of chemical hepatotoxicity and thus have become powerful alternatives to in vivo toxicologic models. Primary hepatocyte culture systems are especially useful in screening cytotoxic and genotoxic compounds and assessing biochemical lesions associated with chemical exposure. We have begun to use this approach in combination with proteomic analysis to construct a molecular "toxicoproteomic" test system for a broad range of relevant and potentially toxic chemicals. Using a highly parallel two-dimensional electrophoretic (2-DE) protein separation system to analyze cells from culture systems, we previously observed significant variations in protein expression that were unrelated to chemical exposure. We hypothesized these artifactual protein alterations were the result of the variations in the culture conditions or cell manipulations, or both. Therefore, we conducted a study to assess the expression of hepatocyte proteins cultured on 6-well plates and recovered for analysis either by scraping/pelleting or direct in-well solubilization. Following incubation of 1.2 x 10(6) hepatocytes in six-well plate, recovery and solubilization of the cells and 2-DE of the solubilized lysates of 100 000 cells, we detected 1388 proteins in the in-well solubilized samples compared to 899 proteins in the washed/scraped/pelleted cell samples, a loss of 35%. Based on protein identification by peptide mass fingerprinting, the subcellular location of nearly all of the proteins whose abundance decreased were cytosolic and those few that increased were either microsomal, mitochondrial, or cytoskeletal proteins. These results emphasize the variation introduced by cell-handling during recovery of hepatocytes from culture plates and may explain at least some of the artifactual differences observed in earlier in vitro experiments. [References: 13]
机译:体外肝制剂被越来越多地用于研究化学肝毒性的各个方面,因此已成为体内毒理学模型的有力替代品。初级肝细胞培养系统在筛选细胞毒性和遗传毒性化合物以及评估与化学暴露有关的生化病变方面特别有用。我们已开始将这种方法与蛋白质组学分析结合使用,以构建适用于各种相关和潜在有毒化学物质的分子“毒物学”测试系统。使用高度平行的二维电泳(2-DE)蛋白质分离系统分析培养系统中的细胞,我们之前观察到蛋白质表达的显着变化与化学暴露无关。我们假设这些人为的蛋白质变化是培养条件或细胞操作或两者的变化的结果。因此,我们进行了一项研究,以评估在6孔板上培养的肝细胞蛋白的表达,并通过刮取/沉淀或直接在孔内溶解来回收进行分析。在六孔板中孵育1.2 x 10(6)肝细胞,回收和溶解细胞以及100000个细胞溶解的裂解物的2-DE之后,在孔中溶解的样品中检测到1388个蛋白质,而899个蛋白质在洗涤/刮擦/切碎的细胞样品中,损失35%。基于通过肽质量指纹图谱鉴定的蛋白质,丰度降低的几乎所有蛋白质的亚细胞位置都是胞质的,而增加量很少的则是微粒体,线粒体或细胞骨架的蛋白质。这些结果强调了从培养板回收肝细胞过程中细胞处理所引起的变异,并且可以解释至少一些在早期体外实验中观察到的人为差异。 [参考:13]

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