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首页> 外文期刊>Bioscience Reports >Oleoyl-oestrone inhibits lipogenic, but maintains thermogenic, gene expression of brown adipose tissue in overweight rats
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Oleoyl-oestrone inhibits lipogenic, but maintains thermogenic, gene expression of brown adipose tissue in overweight rats

机译:油酰-雌酮抑制脂肪生成,但维持超重大鼠棕色脂肪组织的热基因表达

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摘要

In the present study we intended to determine how BAT (brown adipose tissue) maintained thermogenesis under treatment with OE (oleoyl-oestrone), a powerful slimming hormone that sheds off body lipid but maintains the metabolic rate. Overweight male rats were subjected to daily gavages of 10 nmol/g of OE or vehicle (control) for 10?days. A PF (pair-fed) vehicle-receiving group was used to discount the effects attributable to energy availability limitation. Interscapular BAT mass, lipid, DNA, mRNA and the RT-PCR (real-time PCR) expression of lipid and energy metabolism genes for enzymes and regulatory proteins were measured. BAT mass and lipid were decreased in OE and PF, with the latter showing a marked reduction in tissue mRNA. Maintenance of perilipin gene expression in PF and OE rats despite the loss of lipid suggests the preservation of the vacuolar interactive surface, a critical factor for thermogenic responsiveness. OE and, to a lesser extent, PF maintained the expression of genes controlling lipolysis and fatty acid oxidation, but markedly decreased the expression of those genes involved in lipogenic and acyl-glycerol synthesis. OE did not affect UCP1 (uncoupling protein 1) (decreased in PF), β3 adrenergic receptors or hormone-sensitive lipase gene mRNAs, which may translate in maintaining a full thermogenic system potential. OE rats were able to maintain a less energetically stressed BAT (probably through glucose utilization) than PF rats. These changes were not paralleled in PF rats, in which lower thermogenesis and glucose preservation resulted in a heavier toll on internal fat stores. Thus the mechanism of action of OE is more complex and tissue-specific than previously assumed.
机译:在本研究中,我们打算确定BAT(棕色脂肪组织)在OE(油酰-雌酮)的作用下如何保持生热,OE是一种强大的减肥激素,可清除体内脂质,但保持代谢率。对超重的雄性大鼠每天灌胃10 nmol / g OE或溶媒(对照),持续10天。 PF(成对馈电)车辆接收小组被用来抵消由于能源可用性限制而产生的影响。测量了肩cap间BAT质量,脂质,DNA,mRNA以及脂质和能量代谢基因中酶和调节蛋白的RT-PCR(实时PCR)表达。 OE和PF中BAT的质量和脂质降低,后者显示出组织mRNA的显着降低。尽管脂质丢失,但在PF和OE大鼠中维持periplipin基因的表达表明液泡相互作用表面得以保留,而液泡相互作用表面是致热反应的关键因素。 OE和PF在较小程度上保持了控制脂解和脂肪酸氧化的基因的表达,但显着降低了与脂肪生成和酰基甘油合成有关的那些基因的表达。 OE并未影响UCP1(解偶联蛋白1)(PF降低),β3肾上腺素能受体或激素敏感性脂肪酶基因mRNA,这可能会维持完整的产热系统潜能。与PF大鼠相比,OE大鼠能够保持较低的精神压力BAT(可能是通过葡萄糖利用)。这些变化在PF大鼠中是无与伦比的,在PF大鼠中,较低的生热和葡萄糖保存导致内部脂肪储存的费用增加。因此,OE的作用机制比以前假定的更为复杂和组织特异性。

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