Glucose-induced changes of artery anatomy and function account for diabetic vascular complications, which heavily impact disease morbidity and mortality. Since fibronectin containing extra domain A (EDAâ+âFN) is increased in diabetic vessels and participates to vascular remodeling, we wanted to elucidate whether and how EDAâ+âFN is implicated in diabetes-induced endothelial dysfunction using isometric-tension recording in a murine model of diabetes. In thoracic aortas of EDA(-/-), EDA(+/+) (constitutively lacking and expressing EDAâ+âFN respectively), and of wild-type mice (EDA(wt/wt)), streptozotocin (STZ)-induced diabetes impaired endothelial vasodilation to acetylcholine, irrespective of genotype. However STZâ+âEDA(-/-) mice exhibited increased endothelial dysfunction compared with STZâ+âEDA(+/+) and with STZâ+âEDA(wt/wt). Analysis of the underlying mechanisms revealed that STZâ+âEDA(-/-) mice show increased oxidative stress as demonstrated by enhanced aortic superoxide anion, nitrotyrosine levels and expression of NADPH oxidase NOX4 and TGF-β1, the last two being reverted by treatment with the antioxidant n-acetylcysteine. In contrast, NOX1 expression and antioxidant potential were similar in aortas from the three genotypes. Interestingly, reduced eNOS expression in STZâ+âEDA(+/+) vessels is counteracted by increased eNOS coupling and function. Although EDAâ+âFN participates to vascular remodelling, these findings show that it plays a crucial role in limiting diabetic endothelial dysfunction by preventing vascular oxidative stress.
Lack of Fibronectin Extra Domain A Alternative Splicing Exacerbates Endothelial Dysfunction in Diabetes.
纤连蛋白额外结构域 A 选择性剪接的缺乏会加剧糖尿病患者的内皮功能障碍
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作者:Gortan Cappellari Gianluca, Barazzoni Rocco, Cattin Luigi, Muro Andrés F, Zanetti Michela
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2016 | 起止号: | 2016 Nov 29; 6:37965 |
| doi: | 10.1038/srep37965 | 研究方向: | 代谢 |
| 疾病类型: | 糖尿病 | ||
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