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首页> 外文期刊>Current drug targets-The International journal for timely in-depth reviews on drug targets >Involvement of the Toxic AGEs (TAGE)-RAGE System in the Pathogenesis of Diabetic Vascular Complications: A Novel Therapeutic Strategy.
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Involvement of the Toxic AGEs (TAGE)-RAGE System in the Pathogenesis of Diabetic Vascular Complications: A Novel Therapeutic Strategy.

机译:有毒AGE(TAGE)-RAGE系统参与糖尿病性血管并发症的发病机制:一种新的治疗策略。

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Diabetic vascular complications are leading causes of acquired blindness, end-stage renal failure, a variety of neuropathies, and accelerated atherosclerosis, which may be involved in the disabilities and high mortality rates suffered by diabetic patients. Continuous hyperglycemia is involved in the pathogenesis of diabetic micro- and macrovascular complications via various metabolic pathways, and numerous hyperglycemia-induced metabolic and hemodynamic conditions exist, including increased generation of various types of advanced glycation end-products (AGEs). Recently, we demonstrated that glyceraldehyde-derived AGEs (Glycer-AGEs), the predominant components of toxic AGEs (TAGE), play an important role in the pathogenesis of angiopathy in diabetic patients. Moreover, a growing body of evidence suggests that the interaction of TAGE with the receptor for AGEs (RAGE) alters intracellular signaling, gene expression, and the release of pro-inflammatory molecules and elicits oxidative stress generation in numerous types of cells, all of which may contribute to the pathological changes observed in diabetic vascular complications. Therefore, the inhibition of TAGE formation, blockade of TAGE-RAGE interaction, and the suppression of RAGE expression or its downstream pathways are promising targets for therapeutic interventions against diabetic vascular complications. In this review, we discuss the pathophysiological role of the TAGE-RAGE-oxidative stress system and related therapeutic interventions for preventing the development and progression of diabetic vascular complications.
机译:糖尿病性血管并发症是获得性失明,终末期肾衰竭,各种神经病和加速动脉粥样硬化的主要原因,其可能与糖尿病患者的残疾和高死亡率有关。持续的高血糖通过各种代谢途径参与糖尿病微血管和大血管并发症的发病机制,并且存在许多由高血糖引起的代谢和血液动力学状况,包括增加的各种类型的高级糖基化终产物(AGEs)的产生。最近,我们证明了甘油醛衍生的AGEs(Glycer-AGEs)是有毒AGEs(TAGE)的主要成分,在糖尿病患者的血管病发病机理中起着重要的作用。而且,越来越多的证据表明,TAGE与AGEs受体(RAGE)的相互作用会改变细胞内信号传导,基因表达和促炎分子的释放,并在多种类型的细胞中引起氧化应激的产生,所有这些可能有助于糖尿病血管并发症中观察到的病理变化。因此,抑制TAGE形成,阻断TAGE-RAGE相互作用以及抑制RAGE表达或其下游途径是针对糖尿病血管并发症的治疗性干预的有希望的目标。在这篇综述中,我们讨论了TAGE-RAGE-氧化应激系统的病理生理作用以及有关预防糖尿病血管并发症发生和发展的相关治疗性干预措施。

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