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沙格列汀可预防带瓣微型猪冠状动脉血管僵硬度增加。

Saxagliptin Prevents Increased Coronary Vascular Stiffness in Aortic-Banded Mini Swine.

机构信息

From the Human Performance Laboratory, School of Kinesiology, Ball State University, Muncie, IN (B.S.F.)

Department of Kinesiology and Health Promotion, University of Kentucky, Lexington (A.O.).

出版信息

Hypertension. 2018 Aug;72(2):466-475. doi: 10.1161/HYPERTENSIONAHA.118.10993. Epub 2018 Jun 11.

Abstract

Increased peripheral conduit artery stiffness has been shown in patients with heart failure (HF) with preserved ejection fraction. However, it is unknown whether this phenomenon extends to the coronary vasculature. HF with preserved ejection fraction may be driven, in part, by coronary inflammation, and inhibition of the enzyme DPP-4 (dipeptidyl-peptidase 4) reduces inflammation and oxidative stress. The purpose of this study was to determine the effect of saxagliptin-a DPP-4 inhibitor-on coronary stiffness in aortic-banded mini swine. We hypothesized saxagliptin would prevent increased coronary artery stiffness in a translational swine model with cardiac features of HF with preserved ejection fraction by inhibiting perivascular adipose tissue inflammation. Yucatan mini swine were divided into 3 groups: control, aortic-banded untreated HF, and aortic-banded saxagliptin-treated HF. Ex vivo mechanical testing was performed on the left circumflex and right coronary arteries, and advanced glycation end product, NF-κB (nuclear factor-κB), and nitrotyrosine levels were measured. An increase in the coronary elastic modulus of HF animals was associated with increased vascular advanced glycation end products, NF-κB, and nitrotyrosine levels compared with control and prevented by saxagliptin treatment. Aortas from healthy mice were treated with media from swine perivascular adipose tissue culture to assess its role on vascular stiffening. Conditioned media from HF and saxagliptin-treated HF animals increased mouse aortic stiffness; however, only perivascular adipose tissue from the HF group showed increased advanced glycation end products and NF-κB levels. In conclusion, our data show increased coronary conduit vascular stiffness was prevented by saxagliptin and associated with decreased advanced glycation end products, NF-κB, and nitrotyrosine levels in a swine model with potential relevance to HF with preserved ejection fraction.

摘要

在射血分数保留的心力衰竭(HFpEF)患者中,已经观察到外周管道动脉僵硬度增加。然而,尚不清楚这种现象是否扩展到冠状动脉血管。HFpEF 部分可能是由冠状动脉炎症驱动的,而抑制酶 DPP-4(二肽基肽酶 4)可减少炎症和氧化应激。本研究的目的是确定 DPP-4 抑制剂沙格列汀对带主动脉缩窄小型猪冠状动脉僵硬度的影响。我们假设沙格列汀通过抑制血管周围脂肪组织炎症来预防具有 HFpEF 心脏特征的转化猪模型中冠状动脉僵硬的增加。将尤卡坦小型猪分为 3 组:对照组、带主动脉缩窄未治疗的 HF 组和带主动脉缩窄沙格列汀治疗的 HF 组。对左回旋支和右冠状动脉进行离体力学测试,并测量晚期糖基化终产物、NF-κB(核因子-κB)和硝基酪氨酸水平。HF 动物的冠状动脉弹性模量增加与血管晚期糖基化终产物、NF-κB 和硝基酪氨酸水平增加相关,而沙格列汀治疗可预防这种增加。用猪血管周围脂肪组织培养的培养基处理健康小鼠的主动脉,以评估其对血管僵硬的作用。来自 HF 和沙格列汀治疗 HF 动物的条件培养基增加了小鼠主动脉的僵硬;然而,只有 HF 组的血管周围脂肪组织显示出增加的晚期糖基化终产物和 NF-κB 水平。总之,我们的数据表明,在具有射血分数保留心力衰竭潜在相关性的小型猪模型中,沙格列汀可预防冠状动脉传导血管僵硬,并与晚期糖基化终产物、NF-κB 和硝基酪氨酸水平降低相关。

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