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Role of pseudohypoxia in the pathogenesis of type 2 diabetes

机译:假性低氧在2型糖尿病发病机理中的作用

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Type 2 diabetes is caused by persistent high blood glucose, which is known as diabetic hyperglycemia. This hyperglycemic situation, when not controlled, can overproduce NADH and lower nicotinamide adenine dinucleotide (NAD), thereby creating NADH/NAD redox imbalance and leading to cellular pseudohypoxia. In this review, we discussed two major enzymatic systems that are activated by diabetic hyperglycemia and are involved in creation of this pseudohypoxic condition. One system is aldose reductase in the polyol pathway, and the other is poly (ADP ribose) polymerase. While aldose reductase drives overproduction of NADH, PARP could in contrast deplete NAD. Therefore, activation of the two pathways underlies the major mechanisms of NADH/NAD redox imbalance and diabetic pseudohypoxia. Consequently, reductive stress occurs, followed by oxidative stress and eventual cell death and tissue dysfunction. Additionally, fructose formed in the polyol pathway can also cause metabolic syndrome such as hypertension and nonalcoholic fatty liver disease. Moreover, pseudohypoxia can also lower sirtuin protein contents and induce protein acetylation which can impair protein function. Finally, we discussed the possibility of using nicotinamide riboside, an NAD precursor, as a promising therapeutic agent for restoring NADH/NAD redox balance and for preventing the occurrence of diabetic pseudohypoxia.
机译:2型糖尿病是由持续的高血糖引起的,这被称为糖尿病性高血糖症。如果不加以控制,这种高血糖情况会过量产生NADH和降低烟酰胺腺嘌呤二核苷酸(NAD),从而造成NADH / NAD氧化还原失衡并导致细胞假性低氧。在这篇综述中,我们讨论了由糖尿病高血糖症激活并参与这种假性低氧病症的产生的两个主要酶系统。一个系统是多元醇途径中的醛糖还原酶,另一个系统是聚(ADP核糖)聚合酶。虽然醛糖还原酶驱动了NADH的过度生产,但PARP可能会耗尽NAD。因此,这两种途径的激活是NADH / NAD氧化还原失衡和糖尿病假性低氧的主要机制的基础。因此,发生还原性应激,随后发生氧化性应激,最终导致细胞死亡和组织功能障碍。另外,在多元醇途径中形成的果糖还可引起代谢综合征,例如高血压和非酒精性脂肪肝疾病。此外,假性缺氧还可以降低瑟土因蛋白的含量并诱导蛋白乙酰化,从而削弱蛋白功能。最后,我们讨论了使用烟酰胺核糖核苷(一种NAD前体)作为恢复NADH / NAD氧化还原平衡并防止糖尿病假性低氧发生的有希望的治疗剂的可能性。

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