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二甲双胍可改善糖尿病高血糖状态下主动脉组织和微血管内皮细胞的内皮功能。

Metformin improves endothelial function in aortic tissue and microvascular endothelial cells subjected to diabetic hyperglycaemic conditions.

机构信息

Department of Pharmacology, Weill Cornell Medical College in Qatar, P.O. Box 24144, Education City, Doha, Qatar.

Medical Education, Weill Cornell Medical College in Qatar, P.O. Box 24144, Education City, Doha, Qatar.

出版信息

Biochem Pharmacol. 2015 Dec 1;98(3):412-21. doi: 10.1016/j.bcp.2015.10.008. Epub 2015 Oct 20.

Abstract

The cellular mechanisms whereby metformin, the first line drug for type 2 diabetes (T2DM), mediates its antidiabetic effects remain elusive, particularly as to whether metformin has a direct protective action on the vasculature. This study was designed to determine if a brief 3-h exposure to metformin protects endothelial function against the effects of hyperglycaemia. We investigated the protective effects of metformin on endothelial-dependent vasodilatation (EDV) in thoracic aortae from T2DM db/db mice and on high glucose (HG, 40 mM) induced changes in endothelial nitric oxide synthase (eNOS) signaling in mouse microvascular endothelial cells (MMECs) in culture. Exposure of aortae from db+/? non-diabetic control mice to high glucose (HG, 40 mM) containing Krebs for 3-h significantly (P<0.05) reduced acetylcholine (ACh)-induced EDV compared to ACh-induced EDV in aortae maintained in normal glucose (NG, 11 mM) Krebs. The reduction of EDV was partially reversed following a 3-h exposure to 50 μM metformin; metformin also improved ACh-induced EDV in aortae from diabetic db/db mice. Immunoblot analysis of MMECs cultured in HG versus NG revealed a significant reduction of the ratio of phosphorylated (p-eNOS)/eNOS and p-Akt/Akt, but not the expression of total eNOS or Akt. The 3-h exposure of MMECs to metformin significantly (P<0.05) reversed the HG-induced reduction in phosphorylation of both eNOS and Akt; however, no changes were detected for phosphorylation of AMPK or the expression of SIRT1. Our data indicate that a 3-h exposure to metformin can reverse/reduce the impact of HG on endothelial function, via mechanisms linked to increased phosphorylation of eNOS and Akt.

摘要

二甲双胍是治疗 2 型糖尿病(T2DM)的一线药物,但它介导抗糖尿病作用的确切细胞机制仍不清楚,特别是二甲双胍是否对血管有直接的保护作用。本研究旨在确定短暂的 3 小时暴露于二甲双胍是否能保护内皮功能免受高血糖的影响。我们研究了二甲双胍对 T2DM db/db 小鼠胸主动脉内皮依赖性血管舒张(EDV)的保护作用,以及对培养的小鼠微血管内皮细胞(MMECs)中内皮型一氧化氮合酶(eNOS)信号对高葡萄糖(HG,40mM)诱导的变化的保护作用。将非糖尿病对照小鼠 db+/?的主动脉暴露于含 Krebs 的高葡萄糖(HG,40mM)中 3 小时,与在正常葡萄糖(NG,11mM)Krebs 中维持的主动脉相比,乙酰胆碱(ACh)诱导的 EDV 显著降低(P<0.05)。3 小时暴露于 50μM 二甲双胍可部分逆转 EDV 的降低;二甲双胍也改善了糖尿病 db/db 小鼠主动脉的 ACh 诱导的 EDV。在 HG 与 NG 培养的 MMECs 中进行的免疫印迹分析显示,磷酸化(p-eNOS)/eNOS 和 p-Akt/Akt 的比值显著降低,但 eNOS 和 Akt 的总表达没有变化。将 MMECs 暴露于二甲双胍 3 小时,可显著(P<0.05)逆转 HG 诱导的 eNOS 和 Akt 磷酸化降低;然而,AMPK 磷酸化或 SIRT1 的表达没有变化。我们的数据表明,3 小时暴露于二甲双胍可以通过增加 eNOS 和 Akt 的磷酸化来逆转/减少 HG 对内皮功能的影响。

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