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Neural redox stress and remodeling in metabolic syndrome, type 2 diabetes mellitus, and diabetic neuropathy

机译:神经氧化还原应激和代谢综合征,2型糖尿病和糖尿病性神经病的重塑

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Diabetic polyneuropathy (DPN) is the most common complication of diabetes and may frequently be the presenting symptom in type 2 diabetes mellitus (T2DM). Metabolic syndrome and T2DM are associated with multiple metabolic toxicities. These substrate toxicities support the formation of reactive oxygen species (ROS), which are so damaging to cells, tissues and organs and play an important role in the development of multiple diabetic complications. The importance of redox stress (ROS) and their effect on the neuronal unit are discussed. There are at least 5 major pathways involved in the development of DPN: metabolic, vascular, immunologic-autoimmune, neurohormonal growth factor deficiency, and extracellular matrix neuronal unit remodeling.Each of these five pathways are reviewed and related to neural redox stress and the role of ROS. The identification of the toxic substrates (A-FLIGHT acronym), earlier diagnosis of T2DM at the stage of impaired glucose tolerance or impaired fasting glucose, and aggressive global risk reduction with the use of a simple RAAS acronym will assist the clinician in slowing the natural progressive history, and possibly preventing the complications associated with DPN.The pain, foot ulceration, limb loss, organ dysfunction, and the associated morbidity and financial burden all contribute to the need for a better understanding of DPN and the role of redox stress and global risk reduction.
机译:糖尿病多发性神经病(DPN)是糖尿病最常见的并发症,可能经常是2型糖尿病(T2DM)的症状。代谢综合征和T2DM与多种代谢毒性有关。这些底物毒性支持活性氧(ROS)的形成,从而破坏细胞,组织和器官,并在多种糖尿病并发症的发生中发挥重要作用。讨论了氧化还原应激(ROS)的重要性及其对神经元单位的影响。 DPN的发展至少涉及5条主要途径:代谢,血管,免疫自身免疫,神经激素生长因子缺乏和细胞外基质神经元重塑,这5条途径中的每条均被综述并与神经氧化还原应激及其作用有关。 ROS。毒性底物的识别(A-FLIGHT的缩写),在葡萄糖耐量降低或空腹血糖受损的阶段早期诊断T2DM以及通过使用简单的RAAS缩写积极降低全球风险将有助于临床医生减缓自然反应进行性病史,可能预防与DPN相关的并发症。疼痛,足部溃疡,肢体脱落,器官功能障碍以及相关的发病率和经济负担均有助于更好地了解DPN以及氧化还原应激和全球性疾病的作用。降低风险。

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