首页> 外文期刊>Journal of neurosurgical sciences >High-Saturated Fat High-Sugar Diet Accelerates Left-Ventricular Dysfunction Faster than High-Saturated Fat Diet Alone via Increasing Oxidative Stress and Apoptosis in Obese-Insulin Resistant Rats
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High-Saturated Fat High-Sugar Diet Accelerates Left-Ventricular Dysfunction Faster than High-Saturated Fat Diet Alone via Increasing Oxidative Stress and Apoptosis in Obese-Insulin Resistant Rats

机译:高饱和的脂肪高糖饮食通过增加肥胖 - 胰岛素抗性大鼠的氧化应激和凋亡,从高饱和的脂肪饮食加速左心室功能障碍。

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Scope It has been hypothesized that a high-saturated-fat, high-sugar diet (HFHS) causes worse cardiometabolic dysfunction than a high-saturated-fat diet (HFD) due to severe mitochondrial dysfunction, oxidative stress, and apoptosis in obese insulin-resistant rats. Methods and Results Rats are divided into three groups to receive normal diet (ND), HFD, or HFHS for 24 weeks. Cardiometabolic parameters are determined at baseline and every 4 weeks until the end of the feeding protocol. At week 24, hearts are removed to determine mitochondrial function and dynamics, apoptosis, and insulin signaling. HFD and HFHS rats develop obese insulin-resistance at week 8. However, fasting plasma glucose level is increased only in HFHS rats. Myocardial insulin signaling is markedly impaired in HFHS rats compared to other groups. Cardiac autonomic imbalance is observed in both HFD and HFHS rats beginning at week 8. However, cardiac dysfunction is observed earlier (week 8) in HFHS rats, and later at week 12 in HFD rats. Moreover, cardiac and mitochondrial oxidative stress levels, and apoptosis are greater in HFHS rats than HFD rats. Conclusion Both HFD and HFHS cause cardiometabolic dysfunction. HFHS causes more severe metabolic disturbance, oxidative stress, and apoptosis than HFD, which leads to an accelerated LV dysfunction in HFHS rats.
机译:它已经假设,由于严重的线粒体功能障碍,氧化应激和肥胖胰岛素中的细胞凋亡,高饱和脂肪,高糖饮食(HFHS)引起比高饱和脂肪饮食(HFD)更糟糕的心肌异常功能障碍。抗性大鼠。方法和结果大鼠分为三组,以获得正常饮食(Nd),HFD或HFHs 24周。心电图参数在基线确定,每4周确定,直到进料​​协议结束。在第24周,被移除了心脏以确定线粒体功能和动力学,细胞凋亡和胰岛素信号传导。 HFD和HFHS大鼠在第8周发育肥胖的胰岛素抵抗力。然而,只有在HFHS大鼠中只增加空腹血浆葡萄糖水平。与其他组相比,在HFHS大鼠中,心肌胰岛素信号传导显着损害。在第8周开始的HFD和HFHS大鼠中观察到心脏自主失衡。然而,HFHS大鼠早期(第8周)观察到心脏功能障碍,后来在HFD大鼠的第12周。此外,心脏和线粒体氧化应激水平和细胞凋亡比HFD大鼠更大。结论HFD和HFH均导致心脏异构功能障碍。 HFHS引起更严重的代谢扰动,氧化应激和凋亡,而不是HFD,这导致HFHS大鼠的加速LV功能障碍。

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