Pop-Busui Rodica, Ang Lynn, Holmes Crystal, Gallagher Katherine, Feldman Eva L
Department of Internal Medicine, Division of Metabolism, Metabolism Endocrinology and Diabetes, University of Michigan, 5329 Brehm Tower, 1000 Wall Street, Ann Arbor, MI, 48105, USA.
The Division of Metabolism, Endocrinology and Diabetes, Dominos Farms, Lobby C, Suite 1300 24 Frank Lloyd Wright Drive, PO Box 451, Ann Arbor, MI, 48106-0451, USA.
Curr Diab Rep. 2016 Mar;16(3):29. doi: 10.1007/s11892-016-0727-5.
Diabetic neuropathies (DNs) are one of the most prevalent chronic complications of diabetes and a major cause of disability, high mortality, and poor quality of life. Given the complex anatomy of the peripheral nervous system and types of fiber dysfunction, DNs have a wide spectrum of clinical manifestations. The treatment of DNs continues to be challenging, likely due to the complex pathogenesis that involves an array of systemic and cellular imbalances in glucose and lipids metabolism. These lead to the activation of various biochemical pathways, including increased oxidative/nitrosative stress, activation of the polyol and protein kinase C pathways, activation of polyADP ribosylation, and activation of genes involved in neuronal damage, cyclooxygenase-2 activation, endothelial dysfunction, altered Na(+)/K(+)-ATPase pump function, impaired C-peptide-related signaling pathways, endoplasmic reticulum stress, and low-grade inflammation. This review summarizes current evidence regarding the role of low-grade inflammation as a potential therapeutic target for DNs.
糖尿病神经病变(DNs)是糖尿病最常见的慢性并发症之一,也是导致残疾、高死亡率和生活质量低下的主要原因。鉴于周围神经系统复杂的解剖结构和纤维功能障碍的类型,DNs具有广泛的临床表现。DNs的治疗仍然具有挑战性,这可能是由于其复杂的发病机制,涉及一系列葡萄糖和脂质代谢的全身及细胞失衡。这些失衡导致各种生化途径的激活,包括氧化/亚硝化应激增加、多元醇和蛋白激酶C途径激活、多聚ADP核糖基化激活、参与神经元损伤的基因激活、环氧合酶-2激活、内皮功能障碍、钠/钾-ATP酶泵功能改变、C肽相关信号通路受损、内质网应激和低度炎症。本综述总结了关于低度炎症作为DNs潜在治疗靶点作用的现有证据。