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首页> 外文期刊>Journal of Bioinformatics and Computational Biology >Succinate aggravates NAFLD progression to liver cancer on the onset of obesity: An in silico model
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Succinate aggravates NAFLD progression to liver cancer on the onset of obesity: An in silico model

机译:琥珀酸盐对肥胖发作的肝癌加剧NAFLD进展:在硅模型中

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The incidence and prevalence of nonalcoholic fatty liver disease (NAFLD) have been increasing to epidemic proportions around the world. NAFLD, a chronic liver disease that affects the nondrinkers, is mainly associated with steatohepatitis and cirrhosis. The progression of NAFLD associated with obesity increases the risk of liver cancer, a disease with poor outcomes and limited therapeutic options. In order to investigate the underlying cellular dynamics leading to NAFLD progression towards cancer on the onset of obesity, we have integrated human hepatocyte pathway with hypcoda-inducible factorl-alpha (HIF1-alpha) signaling pathway using state space model based on classical control theory. Modified Michaelis-Menten equation and mass action law have been used to define flux vectors of the proposed model. We have incorporated feedback inhibition/activation and allosteric effects into the simulink-based model. The values of kinetic constants have been taken from the literature. It is found that on the onset of obesity, HIF1-alpha-induced proteins stabilize approximately 62 times that in the case of a normal cell. Consequently, the HIF1-alpha-induced proteins enhance the enzymatic activities of hexokinase (HK), phosphoucto kinase (PFK), lactate dehydrogenase (LDH), and pyruvate dehydrogenase (PDH), which induce Warburg effect promoting an environment suitable for cancer cells.
机译:非酒精性脂肪肝疾病(NAFLD)的发病率和患病率一直在增加世界各地的流行性比例。 NAFLD是一种影响非新产品的慢性肝病,主要与脱脂性肝炎和肝硬化有关。与肥胖相关的NAFLD的进展增加了肝癌的风险,一种疾病的结果差,治疗方案有限。为了研究肥胖症发病中患有NAFLD进展的潜在细胞动态,使用基于经典控制理论的状态空间模型,我们具有综合人肝细胞途径,使用状态空间模型进行钙糊糊的因子-α(HIF1-alpha)信号传导途径。改进的Michaelis-Menten方程和大规模行动法已用于定义所提出的模型的磁通矢量。我们已将反馈抑制/激活和变构效应纳入了基于Simulink的模型。动力学常数的值已从文献中取出。发现,在肥胖的发作,HIF1-α-诱导的蛋白质稳定在正常细胞的情况下约62倍。因此,HIF1-α诱导的蛋白质增强了六酮酶(HK),磷源激酶(PFK),乳酸脱氢酶(LDH)和丙酮酸脱氢酶(PDH)的酶活性,其诱发Warburg效应促进适合癌细胞的环境。

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