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首页> 外文期刊>Obesity Surgery >Expression Profile in Omental and Subcutaneous Adipose Tissue from Lean and Obese Subjects. Repression of Lipolytic and Lipogenic Genes
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Expression Profile in Omental and Subcutaneous Adipose Tissue from Lean and Obese Subjects. Repression of Lipolytic and Lipogenic Genes

机译:在瘦弱和肥胖受试者的网膜和皮下脂肪组织中的表达谱。抑制脂解和生脂基因

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The adipose tissue is a highly regulated endocrine and paracrine organ that secretes a wide variety of biologically active molecules involved in the control of energy balance and the regulation of body weight. Our work aimed to analyze the dysregulation of the adipocyte metabolism and compare the gene expression patterns between omental (OM) and subcutaneous (SC) adipose tissue from obese and lean subjects by using whole-genome DNA microarrays. OM and SC adipose tissues were obtained from 43 obese subjects undergoing bariatric surgery and from six lean individuals. Gene expression analysis was performed by whole-genome microarrays and Taqman RT-PCR. The analysis of microarrays showed upregulation of 545 genes in OM and 47 in SC adipose tissue, whereas 723 and 27 genes were downregulated in OM and SC tissue, respectively, in obese patients. Significantly altered genes showed at least a twofold change of p < 0.05. Validation of the arrays with 28 genes was carried out by using low density microfluidic cards which confirmed the changes found in most genes. We focused on the altered expression of gene coding for enzymes and transcription factors involved in lipid metabolism. Interestingly, some of these genes have not been previously described in obesity. Our results show that adipose tissue from obese subjects entails defense mechanisms against an excessive expansion and fat accumulation, repressing both lipogenesis and lipolysis.
机译:脂肪组织是高度调节的内分泌和旁分泌器官,其分泌各种各样的生物活性分子,参与控制能量平衡和体重。我们的工作旨在通过使用全基因组DNA微阵列分析肥胖和瘦者的网膜(OM)和皮下(SC)脂肪组织之间的脂肪细胞代谢异常,并比较基因表达模式。 OM和SC脂肪组织来自43名接受减肥手术的肥胖受试者和6个瘦人。基因表达分析通过全基因组微阵列和Taqman RT-PCR进行。微阵列分析显示,肥胖患者的OM中545个基因上调,SC脂肪组织中的47个基因上调,而OM和SC组织中的723个和27个基因分别下调。显着改变的基因显示出至少两倍的p <0.05。使用低密度微流控卡对包含28个基因的阵列进行验证,该卡确认了大多数基因中发现的变化。我们集中研究了参与脂质代谢的酶和转录因子编码基因的表达变化。有趣的是,其中一些基因先前并未在肥胖症中描述。我们的结果表明,肥胖受试者的脂肪组织需要防御机制,以防止过度扩张和脂肪堆积,从而抑制脂肪生成和脂解作用。

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