Pathophysiology Program, ICBM, Faculty of Medicine, University of Chile, Av. Salvador 486, Providencia, 7500922 Santiago, Chile.
International Center for Andean Studies, Universidad de Chile, Putre, Chile.
Oxid Med Cell Longev. 2018 Jan 11;2018:7239123. doi: 10.1155/2018/7239123. eCollection 2018.
Alterations in cardiac energy metabolism play a key role in the pathogenesis of diabetic cardiomyopathy. Hypercholesterolemia associated with bioenergetic impairment and oxidative stress has not been well characterized in the cardiac function under glycemic control deficiency conditions. This work aimed to determine the cardioprotective effects of (QUE) against the damage induced by a high-cholesterol (HC) diet in hyperglycemic rats, addressing intracellular antioxidant mechanisms and bioenergetics. Quercetin reduced HC-induced alterations in the lipid profile and glycemia in rats. In addition, QUE attenuated cardiac diastolic dysfunction (increased E:A ratio), prevented cardiac cholesterol accumulation, and reduced the increase in HC-induced myocyte density. Moreover, QUE reduced HC-induced oxidative stress by preventing the decrease in GSH/GSSG ratio, Nrf2 nuclear translocation, HO-1 expression, and antioxidant enzymatic activity. Quercetin also counteracted HC-induced bioenergetic impairment, preventing a reduction in ATP levels and alterations in PGC-1, UCP2, and PPAR expression. In conclusion, the mechanisms that support the cardioprotective effect of QUE in rats with HC might be mediated by the upregulation of antioxidant mechanisms and improved bioenergetics on the heart. Targeting bioenergetics with QUE can be used as a pharmacological approach to modulate structural and functional changes of the heart under hypercholesterolemic and hyperglycemic conditions.
心脏能量代谢的改变在糖尿病心肌病的发病机制中起着关键作用。与生物能量障碍和氧化应激相关的高胆固醇血症在血糖控制不足情况下的心脏功能中尚未得到很好的描述。本研究旨在确定 QUE(槲皮素)对高胆固醇(HC)饮食诱导的高血糖大鼠心脏损伤的保护作用,探讨其细胞内抗氧化机制和能量代谢。槲皮素降低了 HC 诱导的大鼠血脂谱和血糖改变。此外,QUE 减轻了心脏舒张功能障碍(E/A 比值升高),防止了心脏胆固醇积累,并减少了 HC 诱导的心肌细胞密度增加。此外,QUE 通过防止 GSH/GSSG 比例、Nrf2 核易位、HO-1 表达和抗氧化酶活性降低来减轻 HC 诱导的氧化应激。槲皮素还对抗 HC 诱导的能量代谢障碍,防止 ATP 水平降低和 PGC-1、UCP2 和 PPAR 表达改变。总之,支持 QUE 在 HC 大鼠中发挥心脏保护作用的机制可能是通过上调抗氧化机制和改善心脏的能量代谢来介导的。用 QUE 靶向能量代谢可以作为一种药理学方法,在高胆固醇血症和高血糖症条件下调节心脏的结构和功能变化。