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首页> 外文期刊>Vascular pharmacology >Saxagliptin prevents vascular remodeling and oxidative stress in db/db mice. Role of endothelial nitric oxide synthase uncoupling and cyclooxygenase
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Saxagliptin prevents vascular remodeling and oxidative stress in db/db mice. Role of endothelial nitric oxide synthase uncoupling and cyclooxygenase

机译:沙格列汀可防止db / db小鼠的血管重塑和氧化应激。内皮型一氧化氮合酶解偶联和环氧合酶的作用

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摘要

To explore the hypothesis that DPP-IV are involved in the diabetes-induced vascular damage, we assessed the vascular effects of chronic administration of saxagliptin (Saxa) or metformin (Met) in db/db mice, a model of type 2 diabetes, evaluating vascular structure and endothelial function in mesenteric small arteries. The increases in media/lumen and media cross sectional area were prevented by Saxa. In db/db, the blunted response to acetylcholine was only marginally affected by L-NAME (NO-synthase inhibitor), improved by SC-560 (cyclooxygenase-1 inhibitor) or SQ-29548 (thromboxane receptor antagonist), and totally restored by Apocynin (NAD(P)H-oxidase inhibitor). DFU (cyclooxygenase-2 inhibitor) had no effect. Saxa improved acetylcholine-induced relaxation, which returned partially sensitive to the inhibition of L-NAME. Dihydroethidium staining revealed an increased intravascular superoxide production in db/db, attenuated by L-NAME and Saxa, and abrogated by apocynin. The dimer/monomer ratio of endothelial NOS was decreased in db/db mice and restored by Saxa. Cyclooxygenase-1 and thromboxane-A(2) receptor expression, higher in db/db, was down-regulated by Saxa. Met treatment did not modify any of the abnormal vascular responses.
机译:为了探讨DPP-IV参与糖尿病引起的血管损伤的假设,我们评估了db / db小鼠(2型糖尿病模型)长期服用沙格列汀(Saxa)或二甲双胍(Met)的血管作用,评估肠系膜小动脉的血管结构和内皮功能。萨克萨州防止了培养基/管腔和培养基横截面积的增加。在db / db中,对乙酰胆碱的钝化反应仅受到L-NAME(NO合酶抑制剂)的轻微影响,被SC-560(环氧合酶-1抑制剂)或SQ-29548(血栓烷受体拮抗剂)改善,并完全恢复。 Apocynin(NAD(P)H-氧化酶抑制剂)。 DFU(环氧合酶2抑制剂)无效。萨克斯改善了乙酰胆碱引起的舒张作用,使舒张作用对L-NAME的抑制部分敏感。 Dihydroethidium染色显示db / db中血管内超氧化物的产生增加,被L-NAME和Saxa减弱,并由Apocynin消除。在db / db小鼠中,内皮NOS的二聚体/单体比降低,并被Saxa恢复。环氧合酶-1和血栓烷-A(2)受体的表达,较高的db / db,被Saxa下调。大都会治疗未改变任何异常血管反应。

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