Department of Human Health and Nutritional Sciences, University of Guelph, Guelph, Ontario, Canada.
PLoS One. 2012;7(12):e52193. doi: 10.1371/journal.pone.0052193. Epub 2012 Dec 17.
A high fat (HF) diet rapidly impairs the ability of adiponectin (Ad) to stimulate fatty acid (FA) oxidation in oxidative soleus muscle, but the underlying mechanism remains elusive. Mere days of HF feeding also increase the muscle's production and accumulation of reactive oxygen species (ROS) and shift cellular redox to a more oxidized state. It seems plausible that this shift towards a more oxidized state might act as negative feedback to suppress the ability of Ad to stimulate FA oxidation and generate more ROS. Therefore, we sought to determine whether i) a shift towards a more oxidized redox state (reduction in GSH/2GSSG) coincided with impaired Ad-stimulated palmitate oxidation in oxidative and glycolytic rodent muscle after 5 days of HF feeding (60% kCal), and ii) if supplementation with the antioxidant, N-acetylcysteine (NAC) could prevent the HF-diet induced impairment in Ad-response. Globular Ad (gAd) increased palmitate oxidation in isolated soleus and EDL muscles by 42% and 34%, respectively (p<0.05) but this was attenuated with HF feeding in both muscles. HF feeding decreased total GSH (-26%, p<0.05) and GSH/2GSSG (-49%, p<0.05) in soleus, but not EDL. Supplementation with NAC prevented the HF diet-induced reductions in GSH and GSH/2GSSG in soleus, but did not prevent the loss of Ad response in either muscle. Furthermore, direct incubations with H(2)O(2) did not impair Ad-stimulated FA oxidation in either muscle. In conclusion, our data indicates that skeletal muscle Ad resistance is rapidly induced in both oxidative and glycolytic muscle, independently of altered cellular redox state.
高脂肪(HF)饮食会迅速损害脂联素(Ad)刺激氧化型比目鱼肌脂肪酸(FA)氧化的能力,但潜在机制尚不清楚。仅仅几天的 HF 喂养也会增加肌肉中活性氧(ROS)的产生和积累,并将细胞内氧化还原状态向更氧化的方向转变。似乎可以合理地认为,这种向更氧化状态的转变可能作为负反馈抑制 Ad 刺激 FA 氧化并产生更多 ROS 的能力。因此,我们试图确定以下两点:i)在 HF 喂养(60%千卡) 5 天后,氧化型和糖酵解型啮齿动物肌肉中,氧化还原状态向更氧化的方向转变(GSH/2GSSG 减少)是否与 Ad 刺激的棕榈酸氧化作用受损同时发生,以及 ii)如果补充抗氧化剂 N-乙酰半胱氨酸(NAC)是否可以防止 HF 饮食引起的 Ad 反应受损。球状 Ad(gAd)使分离的比目鱼肌和 EDL 肌肉中的棕榈酸氧化分别增加了 42%和 34%(p<0.05),但在这两种肌肉中,HF 喂养均减弱了这种作用。HF 喂养降低了比目鱼肌中的总 GSH(-26%,p<0.05)和 GSH/2GSSG(-49%,p<0.05),但 EDL 中没有降低。NAC 的补充防止了 HF 饮食引起的比目鱼肌中 GSH 和 GSH/2GSSG 的减少,但没有防止两种肌肉中 Ad 反应的丧失。此外,直接用 H(2)O(2)孵育不会损害两种肌肉中的 Ad 刺激 FA 氧化。总之,我们的数据表明,氧化型和糖酵解型肌肉中均迅速诱导了骨骼肌 Ad 抵抗,与细胞内氧化还原状态的改变无关。