首页> 外文OA文献 >Intramuscular Heat Shock Protein 72 and Heme Oxygenase-1 mRNA Are Reduced in Patients With Type 2 Diabetes: Evidence That Insulin Resistance Is Associated With a Disturbed Antioxidant Defense Mechanism
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Intramuscular Heat Shock Protein 72 and Heme Oxygenase-1 mRNA Are Reduced in Patients With Type 2 Diabetes: Evidence That Insulin Resistance Is Associated With a Disturbed Antioxidant Defense Mechanism

机译:2型糖尿病患者的肌肉内热休克蛋白72和血红素氧酶-1 mRNA减少:证据表明胰岛素抗性与令人不安的抗氧化防御机制有关

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摘要

To examine whether genes associated with cellular defense against oxidative stress are associated with insulin sensitivity, patients with type 2 diabetes (n = 7) and age-matched (n = 5) and young (n = 9) control subjects underwent a euglycemic-hyperinsulinemic clamp for 120 min. Muscle samples were obtained before and after the clamp and analyzed for heat shock protein (HSP)72 and heme oxygenase (HO)-1 mRNA, intramuscular triglyceride content, and the maximal activities of β-hyroxyacyl-CoA dehydrogenase (β-HAD) and citrate synthase (CS). Basal expression of both HSP72 and HO-1 mRNA were lower (P 0.05) by 33 and 55%, respectively, when comparing diabetic patients with age-matched and young control subjects, with no differences between the latter groups. Both basal HSP72 (r = 0.75, P 0.001) and HO-1 (r = 0.50, P 0.05) mRNA expression correlated with the glucose infusion rate during the clamp. Significant correlations were also observed between HSP72 mRNA and both β-HAD (r = 0.61, P 0.01) and CS (r = 0.65, P 0.01). HSP72 mRNA was induced (P 0.05) by the clamp in all groups. Although HO-1 mRNA was unaffected by the clamp in both the young and age-matched control subjects, it was increased (P 0.05) ∼70-fold in the diabetic patients after the clamp. These data demonstrate that genes involved in providing cellular protection against oxidative stress are defective in patients with type 2 diabetes and correlate with insulin-stimulated glucose disposal and markers of muscle oxidative capacity. The data provide new evidence that the pathogenesis of type 2 diabetes involves perturbations to the antioxidant defense mechanism within skeletal muscle.
机译:为了检查与细胞防御抑制氧化应激相关的基因是否与胰岛素敏感性相关,2型糖尿病患者(n = 7)和年龄匹配(n = 5)和杨(n = 9)对照受试者接受了血糖性高胰岛素血症夹紧120分钟。在夹具之前和之后获得肌样样品,并分析热休克蛋白(HSP)72和血红素氧合酶(HO)-1 mRNA,肌肉内甘油三酯含量和β-氧羰基COA脱氢酶(β-β)的最大活性。柠檬酸合酶(CS)。当比较患有年龄匹配和年轻对照受试者的糖尿病患者时,HSP72和HO-1 mRNA的基础表达分别较低(P <0.05),分别为33%和55%,后者之间没有差异。基底Hsp72(r = 0.75,p <0.001)和HO-1(r = 0.50,p <0.05)mRNA表达与夹层期间的葡萄糖输注速率相关。 HSP72 mRNA和β-β-β(r = 0.61,P <0.01)和Cs(r = 0.65,p <0.01)之间也观察到显着的相关性。通过夹具在所有组中诱导HSP72 mRNA(P <0.05)。虽然HO-1 mRNA不受夹具的钳位在患者中的夹层中受影响,但在夹具后糖尿病患者的增加(P <0.05)〜70倍。这些数据表明,在2型糖尿病患者患者中涉及提供细胞保护的基因,并与胰岛素刺激的葡萄糖处理和肌肉氧化能力标记相关。数据提供了新的证据表明2型糖尿病的发病机制涉及骨骼肌内抗氧化防御机制的扰动。

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