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首页> 外文期刊>Molecular biology reports >Protective properties of the cultured stem cell proteome studied in an animal model of acetaminophen-induced acute liver failure
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Protective properties of the cultured stem cell proteome studied in an animal model of acetaminophen-induced acute liver failure

机译:在乙酰氨基酚诱导的急性肝衰竭的动物模型中研究培养的干细胞蛋白质组的保护性能

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Chronic overuse of common pharmaceuticals, e.g. acetaminophen (paracetamol), often leads to the development of acute liver failure (ALF). This study aimed to elucidate the effect of cultured mesenchymal stem cells (MSCs) proteome on the onset of liver damage and regeneration dynamics in animals with ALF induced by acetaminophen, to test the liver protective efficacy of MSCs proteome depending on the oxygen tension in cell culture, and to blueprint protein components responsible for the effect. Protein compositions prepared from MSCs cultured in mild hypoxic (5% and 10% O-2) and normal (21% O-2) conditions were used to treat ALF induced in mice by injection of acetaminophen. To test the effect of reduced oxygen tension in cell culture on resulting MSCs proteome content we applied a combination of high performance liquid chromatography and mass-spectrometry (LC-MS/MS) for the identification of proteins in lysates of MSCs cultured at different O-2 levels. The treatment of acetaminophen-administered animals with proteins released from cultured MSCs resulted in the inhibition of inflammatory reactions in damaged liver; the area of hepatocyte necrosis being reduced in the first 24h. Compositions obtained from MSCs cultured at lower O-2 level were shown to be more potent than a composition prepared from normoxic cells. A comparative characterization of protein pattern and identification of individual components done by a cytokine assay and proteomics analysis of protein compositions revealed that even moderate hypoxia produces discrete changes in the expression of various subsets of proteins responsible for intracellular respiration and cell signaling. The application of proteins prepared from MSCs grown in vitro at reduced oxygen tension significantly accelerates healing process in damaged liver tissue. The proteomics data obtained for different preparations offer new information about the potential candidates in the MSCs protein repertoire sensitive to oxygen tension in culture medium, which can be involved in the generalized mechanisms the cells use to respond to acute liver failure.
机译:慢性过度使用普通药物,例如常见的药物。乙酰氨基酚(扑热息痛),通常导致急性肝衰竭(ALF)的发育。本研究旨在阐明培养的间充质干细胞(MSCs)蛋白质组对乙酰氨基酚诱导的ALF肝损伤和再生动力学的影响,以根据细胞培养的氧张力来测试MSCs蛋白质的肝脏保护功效,以及负责效果的蓝图蛋白质成分。用MSCs制备的蛋白质组合物在轻度缺氧(5%和10%O-2)和正常(21%O-2)条件下通过注射乙酰氨基酚处理小鼠诱导的Alf。为了测试细胞培养中的降低氧张力的效果,得到MSCs蛋蛋蛋白质含量,我们施加了高效液相色谱和质谱(LC-MS / MS)的组合,用于鉴定在不同O-培养的MSCs的裂解物中的蛋白质。 2级。用培养的MSC释放的蛋白质治疗乙酰氨基酚施用的动物导致受损肝脏中炎症反应的抑制;肝细胞坏死区域在第一个24h中减少。从在较低O-2水平培养的MSCs获得的组合物被证明比由常氧细胞制备的组合物更有效。蛋白质模式的蛋白质模式和鉴定细胞因子测定和蛋白质组学组合物的鉴定的比较表征揭示了甚至中等缺氧在负责细胞内呼吸和细胞信号传导的各种蛋白质表达中产生离散变化。在减少氧气张力下在体外生长的MSCs制备的蛋白质的应用显着加速了肝组织受损的愈合过程。为不同制剂获得的蛋白质组学数据提供有关培养基中对氧气张力敏感的MSCS蛋白曲目中潜在候选的新信息,这可以参与细胞用于响应急性肝衰竭的广义机制。

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