Golbidi Saeid, Badran Mohammad, Laher Ismail
Department of Pharmacology and Therapeutics, Faculty of Medicine, University of British Columbia Vancouver, BC, Canada.
Front Pharmacol. 2011 Nov 17;2:69. doi: 10.3389/fphar.2011.00069. eCollection 2011.
Diabetes mellitus is a multi-faceted metabolic disorder where there is increased oxidative stress that contributes to the pathogenesis of this debilitating disease. This has prompted several investigations into the use of antioxidants as a complementary therapeutic approach. Alpha lipoic acid, a naturally occurring dithiol compound which plays an essential role in mitochondrial bioenergetic reactions, has gained considerable attention as an antioxidant for use in managing diabetic complications. Lipoic acid quenches reactive oxygen species, chelates metal ions, and reduces the oxidized forms of other antioxidants such as vitamin C, vitamin E, and glutathione. It also boosts antioxidant defense system through Nrf-2-mediated antioxidant gene expression and by modulation of peroxisome proliferator activated receptors-regulated genes. ALA inhibits nuclear factor kappa B and activates AMPK in skeletal muscles, which in turn have a plethora of metabolic consequences. These diverse actions suggest that lipoic acid acts by multiple mechanisms, many of which have only been uncovered recently. In this review we briefly summarize the known biochemical properties of lipoic acid and then discussed the oxidative mechanisms implicated in diabetic complications and the mechanisms by which lipoic acid may ameliorate these reactions. The findings of some of the clinical trials in which lipoic acid administration has been tested in diabetic patients during the last 10 years are summarized. It appears that the clearest benefit of lipoic acid supplementation is in patients with diabetic neuropathy.
糖尿病是一种多方面的代谢紊乱疾病,其氧化应激增加,这有助于这种使人衰弱的疾病的发病机制。这促使人们对使用抗氧化剂作为一种辅助治疗方法进行了多项研究。α硫辛酸是一种天然存在的二硫醇化合物,在线粒体生物能量反应中起重要作用,作为一种用于治疗糖尿病并发症的抗氧化剂已受到相当多的关注。硫辛酸可淬灭活性氧,螯合金属离子,并还原其他抗氧化剂(如维生素C、维生素E和谷胱甘肽)的氧化形式。它还通过Nrf-2介导的抗氧化基因表达和通过调节过氧化物酶体增殖物激活受体调控的基因来增强抗氧化防御系统。ALA抑制核因子κB并激活骨骼肌中的AMPK,这反过来又会产生大量的代谢后果。这些不同的作用表明硫辛酸通过多种机制起作用,其中许多机制直到最近才被发现。在这篇综述中,我们简要总结了硫辛酸已知的生化特性,然后讨论了与糖尿病并发症相关的氧化机制以及硫辛酸可能改善这些反应的机制。总结了过去10年中在糖尿病患者中测试硫辛酸给药的一些临床试验的结果。似乎补充硫辛酸最明显的益处在于糖尿病神经病变患者。