首页> 外文期刊>Nutrition & Diabetes >The expression signatures in liver and adipose tissue from obese G?ttingen Minipigs reveal a predisposition for healthy fat accumulation
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The expression signatures in liver and adipose tissue from obese G?ttingen Minipigs reveal a predisposition for healthy fat accumulation

机译:来自肥胖G的肝脏和脂肪组织中的表达鉴定αTTENTEN MINIPIGS揭示了健康脂肪积累的易感性

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Background Model animals are valuable resources for dissecting basic aspects of the regulation of obesity and metabolism. The translatability of results relies on understanding comparative aspects of molecular pathophysiology. Several studies have shown that despite the presence of overt obesity and dyslipidemia in the pig key human pathological hepatic findings such as hepatocellular ballooning and abundant steatosis are lacking in the model. Objectives The aim of this study was to elucidate why these histopathological characteristics did not occur in a high fat, fructose and cholesterol (FFC) diet-induced obese G?ttingen Minipig model. Methods High-throughput expression profiling of more than 90 metabolically relevant genes was performed in liver, subcutaneous adipose tissue (SAT) and visceral adipose tissue (VAT) of male minipigs diet fed: standard chow (SD, n ?=?7); FFC diet ( n ?=?14); FFC diet in streptozotocin-induced diabetic pigs (FFC _(DIA), n ?=?8). Moreover, histopathological assessment of SAT and VAT was performed. Results 12, 4 and 1 genes were highly significantly differentially expressed in liver, SAT and VAT when comparing the FFC and SD groups whereas the corresponding numbers were 15, 2, and 1 when comparing the FFC _(DIA) and SD groups. Although the minipigs in both FFC groups developed sever obesity and dyslipidemia, the insulin-signaling pathways were not affected. Notably, four genes involved in lipid acquisition and removal, were highly deregulated in the liver: PPARG, LPL, CD36 and FABP4 . These genes have been reported to play a major role in promoting hepatic steatosis in rodents and humans. Since very little macrophage-associated pro-inflammatory response was detected in the adipose tissues the expansion appears to have no adverse impact on adipose tissue metabolism. Conclusion The study shows that morbidly obese G?ttingen Minipigs are protected against many of the metabolic and hepatic abnormalities associated with obesity due to a remarkable ability to expand the adipose compartments to accommodate excess calories.
机译:背景模型动物是解剖肥胖和新陈代谢调节的基本方面的宝贵资源。结果的易用性依赖于理解分子病理生理学的比较方面。几项研究表明,尽管存在猪关键人体病理肝脏的明显肥胖和血脂血症等肝细胞膨胀性和丰富的脂肪缺乏。目的本研究的目的是阐明为什么这些组织病理学特征在高脂肪,果糖和胆固醇(FFC)诱导的肥胖G?Ttingen Minipig模型中没有发生。方法在肝脏,皮下脂肪组织(SAT)和内脏脂肪组织(VAT)中进行高通量表达分析超过90个代谢相关基因的雄性MINIPIGS饮食:标准周(SD,N?=?7); FFC饮食(n?=?14);在链脲佐菌素诱导的糖尿病猪(FFC _(DIA),N?= 8)中的FFC饮食。此外,进行了饱和六位和增值税的组织病理学评估。结果12,4和1基因在比较FFC和SD基团时在肝脏,饱和度和VAT中高度显着表达,而相应的数量为15,2和1,则在比较FFC _(DIA)和SD组时。虽然FFC组中的MINIPIGS发育了严重肥胖和血脂病,但胰岛素信号通路不受影响。值得注意的是,在肝脏中涉及脂质采集和去除的四种基因在肝脏中高度管苏:PPARG,LPL,CD36和Fabp4。据报道,这些基因在促进啮齿动物和人类的肝脏脂肪变性方面发挥着重要作用。由于在脂肪组织中检测到非常小的巨噬细胞相关的促炎反应,因此膨胀似乎对脂肪组织代谢没有不利影响。结论该研究表明,由于扩展脂肪隔室的显着能力,受到肥胖的许多代谢和肝异常,受到肥胖的许多代谢和肝异常的影响。

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