Type 2 diabetes severely impairs structural and functional adaptation of rat resistance arteries to chronic changes in blood flow

被引:41
作者
de Chantemele, Eric J. Belin
Vessieres, Emilie
Guihot, Anne-Laure
Toutain, Bertrand
Maquignau, Maud
Loufrani, Laurent
Henrion, Daniel [1 ]
机构
[1] INSERM, U771, F-75654 Paris 13, France
关键词
Blood flow; Shear stress; Resistance arteries; Type; 2; diabetes; Zucker diabetic fatty rats; Endothelium; Nitric oxide; Reactive oxygen species; ENDOTHELIUM-DEPENDENT DILATION; ANGIOTENSIN-CONVERTING ENZYME; GLYCATION END-PRODUCTS; MICE LACKING; MICROVASCULAR ADAPTATION; VASCULAR HYPERTROPHY; PHYSICAL-ACTIVITY; SHEAR-STRESS; NO; DYSFUNCTION;
D O I
10.1093/cvr/cvn334
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Endothelial dysfunction in resistance arteries (RAs) leads to end-organ damage in type 2 diabetes. Remodelling of RAs in response to chronic increases in blood flow depends on the integrity of the endothelium. Since type 2 diabetes impairs endothelial sensitivity to flow and increases oxidative stress, we hypothesized that flow-induced remodelling in RAs would be impaired in diabetes. Thus, we studied the structural and functional adaptation of RAs from Zucker diabetic fatty (ZDF) and lean Zucker (LZ) rats to chronic changes in flow. Mesenteric RAs were alternatively ligated so that one artery was submitted to high flow (HF) and compared with normal-flow (NF) arteries located at distance. After 3 weeks, arteries were studied in vitro (n = 10 rats per group). Arterial diameter (468 vs. 394 +/- 8 mu m) and endothelial (acetylcholine)-dependent dilation (91 +/- 8 vs. 75 +/- 6% dilation) were higher in HF than in NF arteries in LZ rats. In ZDF rats, diameter (396 +/- 9 vs. 440 +/- 17 mu m) and acetylcholine-mediated dilation (42 +/- 8 vs. 75 +/- 7%) were lower in HF than in NF arteries. Nevertheless, endothelial NO synthase and NADP(H) oxidase subunits (gp91, p67) expression level and superoxide production (dihydroethidium staining) were higher in HF than in NF arteries in both strains, suggesting an efficient flow-sensing process in ZDF rats. In ZDF rats, basal oxidative stress was higher compared with LZ rats: dihydroethidium staining was higher in NF and HF arteries from ZDF rats, and acetylcholine-mediated dilation was improved by an acute antioxidant (tempol) in NF and HF arteries from ZDF rats. Thus, superoxide overproduction in ZDF rats impaired NO-dependent dilation and HF remodelling. Indeed, a chronic treatment with tempol increased HF artery diameter and endothelium-dependent dilation in ZDF rats. In type 2 diabetic rats, a chronic increase in blood flow failed to induce outward remodelling and to improve endothelium-dependent dilation, mainly because of superoxide overproduction.
引用
收藏
页码:788 / 796
页数:9
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