首页> 外文期刊>Nutrition Metabolism >Comparative effects of oleoyl-estrone and a specific β3-adrenergic agonist (CL316, 243) on the expression of genes involved in energy metabolism of rat white adipose tissue
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Comparative effects of oleoyl-estrone and a specific β3-adrenergic agonist (CL316, 243) on the expression of genes involved in energy metabolism of rat white adipose tissue

机译:油酰雌酮和特定的β 3 -肾上腺素能激动剂(CL316,243)对大鼠白色脂肪组织能量代谢相关基因表达的比较作用

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Background The combination of oleoyl-estrone (OE) and a selective β3-adrenergic agonist (B3A; CL316,243) treatment in rats results in a profound and rapid wasting of body reserves (lipid). Methods In the present study we investigated the effect of OE (oral gavage) and/or B3A (subcutaneous constant infusion) administration for 10 days to overweight male rats, compared with controls, on three distinct white adipose tissue (WAT) sites: subcutaneous inguinal, retroperitoneal and epididymal. Tissue weight, DNA (and, from these values cellularity), cAMP content and the expression of several key energy handling metabolism and control genes were analyzed and computed in relation to the whole site mass. Results Both OE and B3A significantly decreased WAT mass, with no loss of DNA (cell numbers). OE decreased and B3A increased cAMP. Gene expression patterns were markedly different for OE and B3A. OE tended to decrease expression of most genes studied, with no changes (versus controls) of lipolytic but decrease of lipogenic enzyme genes. The effects of B3A were widely different, with a generalized increase in the expression of most genes, including the adrenergic receptors, and, especially the uncoupling protein UCP1. Discussion OE and B3A, elicit widely different responses in WAT gene expression, end producing similar effects, such as shrinking of WAT, loss of fat, maintenance of cell numbers. OE acted essentially on the balance of lipolysis-lipogenesis and the blocking of the uptake of substrates; its decrease of synthesis favouring lipolysis. B3A induced a shotgun increase in the expression of most regulatory systems in the adipocyte, an effect that in the end favoured again the loss of lipid; this barely selective increase probably produces inefficiency, which coupled with the increase in UCP1 expression may help WAT to waste energy through thermogenesis. Conclusions There were considerable differences in the responses of the three WAT sites. OE in general lowered gene expression and stealthily induced a substrate imbalance. B3A increasing the expression of most genes enhanced energy waste through inefficiency rather than through specific pathway activation. There was not a synergistic effect between OE and B3A in WAT, but their combined action increased WAT energy waste.
机译:背景大鼠中油酰-雌酮(OE)和选择性β3-肾上腺素能激动剂(B3A; CL316,243)的组合治疗可导致人体储备(脂质)的大量快速消耗。方法在本研究中,我们调查了与对照组相比,对超重雄性大鼠进行OE(口服管)和/或B3A(皮下恒定输注)给药10天对三个不同的白色脂肪组织(WAT)部位的影响:皮下腹股沟,腹膜后和附睾。分析并计算了与整个位点质量相关的组织重量,DNA(以及从这些值得出的细胞数),cAMP含量以及几种关键的能量处理代谢和控制基因的表达。结果OE和B3A均显着降低了WAT质量,而DNA(细胞数量)没有损失。 OE减少,B3A增加cAMP。 OE和B3A的基因表达模式明显不同。 OE倾向于降低大多数研究基因的表达,而脂解没有改变(相对于对照),但脂肪酶基因却减少了。 B3A的作用差异很大,大多数基因的表达普遍增加,包括肾上腺素能受体,尤其是解偶联蛋白UCP1。讨论OE和B3A在WAT基因表达中引起广泛不同的反应,最终产生相似的效果,例如WAT缩小,脂肪减少,细胞数量维持。 OE基本上在脂解-脂肪生成和底物吸收的平衡上起作用。它的合成减少有利于脂解。 B3A导致a弹枪增加了脂肪细胞中大多数调节系统的表达,这种作用最终又有利于脂质的损失。这种勉强选择性的增加可能会导致效率低下,再加上UCP1表达的增加,可能有助于WAT通过生热作用来浪费能量。结论这三个WAT站点的响应存在很大差异。 OE通常会降低基因表达并隐秘地诱导底物失衡。 B3A增加大多数基因的表达会通过效率低下而不是通过特异性途径激活来增加能源浪费。 OE和B3A在WAT中没有协同作用,但它们的共同作用增加了WAT能源浪费。

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