首页> 外文期刊>Food & Function >Borago officinalis seed oil (BSO), a natural source of omega-6 fatty acids, attenuates fat accumulation by activating peroxisomal beta-oxidation both in C. elegans and in diet-induced obese rats
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Borago officinalis seed oil (BSO), a natural source of omega-6 fatty acids, attenuates fat accumulation by activating peroxisomal beta-oxidation both in C. elegans and in diet-induced obese rats

机译:Borago Officinalis Seed Oil(BSO)是欧米茄6脂肪酸的天然来源,通过激活过氧杆菌酶体β-氧化在C.杆状随杆菌和饮食诱导的肥胖大鼠中衰减脂肪积累

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摘要

Obesity is a medical condition with increasing prevalence, characterized by an accumulation of excess fat that could be improved using some bioactive compounds. However, many of these compounds with in vitro activity fail to respond in vivo, probably due to the sophistication of the physiological energy regulatory networks. In this context, C. elegans has emerged as a plausible model for the identification and characterization of the effect of such compounds on fat storage in a complete organism. However, the results obtained in such a simple model are not easily extrapolated to more complex organisms such as mammals, which hinders its application in the short term. Therefore, it is necessary to obtain new experimental data about the evolutionary conservation of the mechanisms of fat loss between worms and mammals. Previously, we found that some omega-6 fatty acids promote fat loss in C. elegans by up-regulation of peroxisomal fatty acid beta-oxidation in an omega-3 independent manner. In this work, we prove that the omega-6 fatty acids' effects on worms are also seen when they are supplemented with a natural omega-6 source (borage seed oil, BSO). Additionally, we explore the anti-obesity effects of two doses of BSO in a diet-induced obesity rat model, validating the up-regulation of peroxisomal fatty acid beta-oxidation. The supplementation with BSO significantly reduces body weight gain and energy efficiency and prevents white adipose tissue accumulation without affecting food intake. Moreover, BSO also increases serum HDL-cholesterol levels, improves insulin resistance and promotes the down-regulation of Cebpa, an adipogenesis-related gene. Therefore, we conclude that the effects of omega-6 fatty acids are highly conserved between worms and obesity-induced mammals, so these compounds could be considered to treat or prevent obesity-related disorders.
机译:肥胖是一种患病率的患病率,其特征在于,通过一些生物活性化合物可以改善的过量脂肪的积累。然而,许多具有体外活动的化合物不能在体内反应,可能是由于生理能源调节网络的复杂性。在这种情况下,C. elegans已经成为一种合理的模型,用于鉴定和表征这些化合物在完全生物体中脂肪储存的效果。然而,在这种简单模型中获得的结果不易推断为更复杂的生物,例如哺乳动物,这在短期内阻碍了其应用。因此,有必要获得关于蠕虫和哺乳动物之间的脂肪损失机制的进化保护的新实验数据。以前,我们发现一些Omega-6脂肪酸通过以ω-3独立的方式的过氧血清脂肪酸β-氧化升高,升高了C.埃贝朗斯的脂肪损失。在这项工作中,当它们补充有天然ω-6来源(琉璃苣种子油,BSO)时,我们还证明了Omega-6脂肪酸对蠕虫的影响。此外,我们探讨了两种剂量BSO在饮食诱导的肥胖大鼠模型中的抗肥胖效果,验证过氧异甲醛脂肪酸β-氧化的上调。 BSO的补充显着降低体重增加和能量效率,并防止白色脂肪组织积累而不会影响食物摄入量。此外,BSO还增加了血清HDL-胆固醇水平,提高了胰岛素抗性并促进了CEBPA的下调,一种脂肪发生相关的基因。因此,我们得出结论,ω-6脂肪酸的影响在蠕虫和肥胖诱导的哺乳动物之间高度保守,因此可以考虑这些化合物治疗或预防肥胖相关的病症。

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