Singh Uma, Jialal Ishwarlal
Laboratory of Atherosclerosis and Metabolic Research, Department of Pathology and Laboratory Medicine, UC Davis Medical Center, Sacramento, California 95817, USA.
Nutr Rev. 2008 Nov;66(11):646-57. doi: 10.1111/j.1753-4887.2008.00118.x.
Diabetes is a common metabolic disorder that is usually accompanied by increased production of reactive oxygen species or by impaired antioxidant defenses. Importantly, oxidative stress is particularly relevant to the risk of cardiovascular disease. Alpha-lipoic acid (LA), a naturally occurring dithiol compound, has long been known as an essential cofactor for mitochondrial bioenergetic enzymes. LA is a very important micronutrient with diverse pharmacologic and antioxidant properties. Pharmacologically, LA improves glycemic control and polyneuropathies associated with diabetes mellitus; it also effectively mitigates toxicities associated with heavy metal poisoning. As an antioxidant, LA directly terminates free radicals, chelates transition metal ions, increases cytosolic glutathione and vitamin C levels, and prevents toxicities associated with their loss. These diverse actions suggest that LA acts by multiple mechanisms both physiologically and pharmacologically. Its biosynthesis decreases as people age and is reduced in people with compromised health, thus suggesting a possible therapeutic role for LA in such cases. Reviewed here is the known efficacy of LA with particular reference to types 1 and 2 diabetes. Particular attention is paid to the potential benefits of LA with respect to glycemic control, improved insulin sensitivity, oxidative stress, and neuropathy in diabetic patients. It appears that the major benefit of LA supplementation is in patients with diabetic neuropathy.
糖尿病是一种常见的代谢紊乱疾病,通常伴随着活性氧生成增加或抗氧化防御受损。重要的是,氧化应激与心血管疾病风险尤其相关。α-硫辛酸(LA)是一种天然存在的二硫醇化合物,长期以来一直被认为是线粒体生物能量酶的必需辅因子。LA是一种非常重要的微量营养素,具有多种药理和抗氧化特性。在药理学上,LA可改善与糖尿病相关的血糖控制和多发性神经病变;它还能有效减轻与重金属中毒相关的毒性。作为一种抗氧化剂,LA可直接终止自由基、螯合过渡金属离子、提高细胞内谷胱甘肽和维生素C水平,并防止因它们缺失而产生的毒性。这些多样的作用表明,LA在生理和药理方面均通过多种机制发挥作用。随着年龄增长,其生物合成会减少,健康状况不佳的人其生物合成也会降低,因此提示LA在这些情况下可能具有治疗作用。本文综述了LA的已知疗效,特别提及1型和2型糖尿病。特别关注LA在糖尿病患者血糖控制、改善胰岛素敏感性、氧化应激和神经病变方面的潜在益处。补充LA的主要益处似乎在于糖尿病神经病变患者。