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2型糖尿病下肢动脉疾病:二甲双胍抑制股动脉超微结构改变以及血管组织中晚期糖基化终末产物/内皮素-1轴介导的炎症,调节血管诱导型一氧化氮合酶和内皮型一氧化氮合酶的表达。

Lower Extremity Arterial Disease in Type 2 Diabetes Mellitus: Metformin Inhibits Femoral Artery Ultrastructural Alterations as well as Vascular Tissue Levels of AGEs/ET-1 Axis-Mediated Inflammation and Modulation of Vascular iNOS and eNOS Expression.

作者信息

Shati Ayed A, Maarouf Amro, Dawood Amal F, Bayoumy Nervana M, Alqahtani Youssef A, A Eid Refaat, Alqahtani Saeed M, Abd Ellatif Mohamed, Al-Ani Bahjat, Albawardi Alia

机构信息

Department of Child Health, College of Medicine, King Khalid University, Abha 61421, Saudi Arabia.

Department of Clinical Biochemistry, Birmingham Heartlands Hospital, University Hospitals Birmingham NHS Foundation Trust, Birmingham B9 5SS, UK.

出版信息

Biomedicines. 2023 Jan 26;11(2):361. doi: 10.3390/biomedicines11020361.

Abstract

Lower extremity arterial disease (LEAD) is a major risk factor for amputation in diabetic patients. The advanced glycation end products (AGEs)/endothelin-1 (ET-1)/nitric oxide synthase (NOS) axis-mediated femoral artery injury with and without metformin has not been previously investigated. Type 2 diabetes mellitus (T2DM) was established in rats, with another group of rats treated for two weeks with 200 mg/kg metformin, before being induced with T2DM. The latter cohort were continued on metformin until they were sacrificed at week 12. Femoral artery injury was established in the diabetic group as demonstrated by substantial alterations to the femoral artery ultrastructure, which importantly were ameliorated by metformin. In addition, diabetes caused a significant ( < 0.0001) upregulation of vascular tissue levels of AGEs, ET-1, and iNOS, as well as high blood levels of glycated haemoglobin, TNF-α, and dyslipidemia. All of these parameters were also significantly inhibited by metformin. Moreover, metformin treatment augmented arterial eNOS expression which had been inhibited by diabetes progression. Furthermore, a significant correlation was observed between femoral artery endothelial tissue damage and glycemia, AGEs, ET-1, TNF-α, and dyslipidemia. Thus, in a rat model of T2DM-induced LEAD, an association between femoral artery tissue damage and the AGEs/ET-1/inflammation/NOS/dyslipidemia axis was demonstrated, with metformin treatment demonstrating beneficial vascular protective effects.

摘要

下肢动脉疾病(LEAD)是糖尿病患者截肢的主要危险因素。此前尚未研究过晚期糖基化终末产物(AGEs)/内皮素-1(ET-1)/一氧化氮合酶(NOS)轴介导的有无二甲双胍情况下的股动脉损伤。在大鼠中建立2型糖尿病(T2DM)模型,另一组大鼠在诱导T2DM之前用200mg/kg二甲双胍治疗两周。后一组大鼠继续服用二甲双胍,直到在第12周处死。糖尿病组建立了股动脉损伤模型,股动脉超微结构有明显改变,重要的是二甲双胍改善了这些改变。此外,糖尿病导致血管组织中AGEs、ET-1和诱导型一氧化氮合酶(iNOS)水平显著上调(<0.0001),同时糖化血红蛋白、肿瘤坏死因子-α(TNF-α)血水平升高以及血脂异常。所有这些参数也都被二甲双胍显著抑制。此外,二甲双胍治疗增加了动脉内皮型一氧化氮合酶(eNOS)的表达,而这种表达在糖尿病进展过程中受到了抑制。此外,观察到股动脉内皮组织损伤与血糖、AGEs、ET-1、TNF-α和血脂异常之间存在显著相关性。因此,在T2DM诱导的LEAD大鼠模型中,证明了股动脉组织损伤与AGEs/ET-1/炎症/NOS/血脂异常轴之间的关联,二甲双胍治疗显示出有益的血管保护作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c111/9953164/b0bb7f5662e7/biomedicines-11-00361-g001.jpg

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