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首页> 外文期刊>Biomolecules >Attenuation of Glucose-Induced Myoglobin Glycation and the Formation of Advanced Glycation End Products (AGEs) by ( R )-α-Lipoic Acid In Vitro
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Attenuation of Glucose-Induced Myoglobin Glycation and the Formation of Advanced Glycation End Products (AGEs) by ( R )-α-Lipoic Acid In Vitro

机译:(R)-α-硫辛酸的葡萄糖诱导的肌红蛋白糖基化作用的减弱和高级糖基化终产物的形成

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High-carbohydrate containing diets have become a precursor to glucose-mediated protein glycation which has been linked to an increase in diabetic and cardiovascular complications. The aim of the present study was to evaluate the protective effect of ( R )-α-lipoic acid (ALA) against glucose-induced myoglobin glycation and the formation of advanced glycation end products (AGEs) in vitro. Methods: The effect of ALA on myoglobin glycation was determined via the formation of AGEs fluorescence intensity, iron released from the heme moiety of myoglobin and the level of fructosamine. The extent of glycation-induced myoglobin oxidation was measured via the levels of protein carbonyl and thiol. Results: The results showed that the co-incubation of ALA (1, 2 and 4 mM) with myoglobin (1 mg/mL) and glucose (1 M) significantly decreased the levels of fructosamine, which is directly associated with the decrease in the formation of AGEs. Furthermore, ALA significantly reduced the release of free iron from myoglobin which is attributed to the protection of myoglobin from glucose-induced glycation. The results also demonstrated a significant protective effect of ALA on myoglobin from oxidative damage, as seen from the decreased protein carbonyls and increased protein thiols. Conclusion: The anti-glycation properties of ALA suggest that ALA supplementation may be beneficial in the prevention of AGEs-mediated diabetic and cardiovascular complications.
机译:含有高碳水化合物的饮食已成为葡萄糖介导的蛋白质糖基化的前兆,这与糖尿病和心血管并发症的增加有关。本研究的目的是评估(R)-α-硫辛酸(ALA)在体外对葡萄糖诱导的肌红蛋白糖基化和高级糖基化终产物(AGEs)形成的保护作用。方法:通过形成AGEs荧光强度,从肌红蛋白血红素部分释放的铁和果糖胺水平来确定ALA对肌红蛋白糖基化的影响。糖基化引起的肌红蛋白氧化的程度通过蛋白质羰基和硫醇的水平进行测量。结果:结果表明,ALA(1、2和4 mM)与肌红蛋白(1 mg / mL)和葡萄糖(1 M)共同孵育可显着降低果糖胺的水平,这直接与果糖胺的降低有关。 AGEs的形成。此外,ALA显着减少了肌红蛋白中游离铁的释放,这归因于保护了肌红蛋白免于葡萄糖诱导的糖基化。该结果还证明了ALA对肌红蛋白免受氧化损伤的显着保护作用,如减少的蛋白质羰基和增加的蛋白质硫醇所见。结论:ALA的抗糖化特性表明,ALA的补充可能对预防AGEs介导的糖尿病和心血管并发症具有有益的作用。

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