Development of an in vitro insulin resistance dissociated model of hepatic steatosis by co-culture system.

IF 5 4区 生物学 Q1 BIOLOGY
Bioscience trends Pub Date : 2022-09-17 Epub Date: 2022-08-13 DOI:10.5582/bst.2022.01242
Jiangwei Xiao, Xiang Li, Zongbao Zhou, Shuwen Guan, Lingjian Zhuo, Botao Gao
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引用次数: 0

Abstract

The evidence shows that there is an associated relationship between hepatosteatosis and insulin resistance. While some existing genetic induction animal and patient models challenge this relationship, indicating that hepatosteatosis is dissociated from insulin resistance. However, the molecular mechanisms of this dissociation remain poorly understood due to a lack of available, reliable, and simplistic setup models. Currently, we used primary rat hepatocytes (rHPCs), co-cultured with rat hepatic stellate cells (HSC-T6) or human foreskin fibroblast cells (HFF-1) in stimulation with high insulin and glucose, to develop a model of steatosis charactered as dissociated lipid accumulation from insulin resistance. Oil-Red staining significantly showed intracellular lipid accumulated in the developed model. Gene expression of sterol regulatory element-binding protein 1c (SREBP1c) and elongase of very-long-chain fatty acids 6 (ELOVL6), key genes responsible for lipogenesis, were detected and obviously increased in this model. Inversely, the insulin resistance related genes expression included phosphoenolpyruvate carboxykinase 1 (PCK1), pyruvate dehydrogenase lipoamide kinase isozyme 4 (PDK4), and glucose-6-phosphatase (G6pase) were decreased, suggesting a dissociation relationship between steatosis and insulin resistance in the developed model. As well, the drug metabolism of this developed model was investigated and showed up-regulation of cytochrome P450 3A (CYP3A) and down-regulation of cytochrome P450 2E1 (CYP2E1) and cytochrome P450 1A2 (CYP1A2). Taken together, those results demonstrate that the in vitro model of dissociated steatosis from insulin resistance was successfully created by our co-cultured cells in high insulin and glucose medium, which will be a potential model for investigating the mechanism of insulin resistance dissociated steatosis, and discovering a novel drug for its treatment.

共培养体外胰岛素抵抗解离肝脂肪变性模型的建立。
有证据表明,肝纤维化与胰岛素抵抗之间存在相关关系。然而,一些现有的遗传诱导动物和患者模型对这种关系提出了质疑,表明肝纤维化与胰岛素抵抗无关。然而,由于缺乏可用的、可靠的和简单的设置模型,这种解离的分子机制仍然知之甚少。目前,我们利用原代大鼠肝细胞(rHPCs),与大鼠肝星状细胞(HSC-T6)或人包皮成纤维细胞(HFF-1)在高胰岛素和高葡萄糖刺激下共同培养,建立了一种脂肪变性模型,其特征是胰岛素抵抗引起的游离脂质积累。油红染色显示大鼠细胞内脂质积累明显。检测到脂肪生成关键基因甾醇调控元件结合蛋白1c (SREBP1c)和超长链脂肪酸延长酶6 (ELOVL6)的基因表达,并明显升高。相反,胰岛素抵抗相关基因包括磷酸烯醇丙酮酸羧激酶1 (PCK1)、丙酮酸脱氢酶脂酰胺激酶同工酶4 (PDK4)和葡萄糖-6-磷酸酶(G6pase)的表达降低,表明脂肪变性与胰岛素抵抗之间存在解离关系。同时,研究了该模型的药物代谢,发现细胞色素P450 3A (CYP3A)上调,细胞色素P450 2E1 (CYP2E1)和细胞色素P450 1A2 (CYP1A2)下调。综上所述,我们在高胰岛素和高葡萄糖培养基中共培养的细胞成功建立了胰岛素抵抗解离性脂肪变性体外模型,这将为研究胰岛素抵抗解离性脂肪变性的机制和发现治疗胰岛素抵抗解离性脂肪变性的新药提供一个潜在的模型。
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来源期刊
CiteScore
13.60
自引率
1.80%
发文量
47
审稿时长
>12 weeks
期刊介绍: BioScience Trends (Print ISSN 1881-7815, Online ISSN 1881-7823) is an international peer-reviewed journal. BioScience Trends devotes to publishing the latest and most exciting advances in scientific research. Articles cover fields of life science such as biochemistry, molecular biology, clinical research, public health, medical care system, and social science in order to encourage cooperation and exchange among scientists and clinical researchers.
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