葡萄糖升高可减弱微血管视网膜内皮细胞中激动剂和血流刺激的内皮型一氧化氮合酶活性。

Paul Connell, Tony Walshe, Gail Ferguson, Wei Gao, Colm O'Brien, Paul A Cahill
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引用次数: 21

摘要

由于内皮功能障碍导致的相反血管舒张剂和血管收缩剂的血管活性释放受损是糖尿病视网膜病变发病机制的组成部分。本研究的目的是利用层流剪切仪和体外灌注的经毛细血管培养系统,确定在静态(基础和乙酰胆碱刺激)和流动(层流剪切应力[10达因/cm2和脉动流量0.3至23达因/cm2)条件下,高血糖对牛微血管视网膜内皮细胞(BRECs)内皮一氧化氮合酶(eNOS)表达和一氧化氮(NO)释放的影响。在将BRECs暴露于不同浓度的葡萄糖和甘露醇(0至25 mM)后,分别通过硝酸盐水平和免疫印迹检测eNOS的活性和表达。在静态条件下,与渗透性甘露醇对照相比,暴露于葡萄糖浓度增加后,eNOS的表达显著下降,并伴有条件培养基中硝酸盐水平的显著剂量依赖性下降。与渗透对照相比,暴露于16和25 mM葡萄糖后,乙酰胆碱刺激的NO释放增加(2.0 +/- 0.3倍)分别显著减少55% +/- 5%和65% +/- 4.5%。在平行研究中,与甘露醇相比,葡萄糖显著抑制了层流剪切应力和脉动流诱导的活性。我们得出结论,高血糖会损害视网膜微血管内皮细胞中NO的激动剂依赖性和血流依赖性释放,从而可能导致血管内皮功能障碍和糖尿病视网膜病变的自我调节受损。
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Elevated glucose attenuates agonist- and flow-stimulated endothelial nitric oxide synthase activity in microvascular retinal endothelial cells.

Impaired vasoactive release of opposing vasodilator and vasoconstrictor mediators due to endothelial dysfunction is integral to the pathogenesis of diabetic retinopathy. The aim of this study was to determine the effect of hyperglycemia on the expression of endothelial nitric oxide synthase (eNOS) and the release of nitric oxide (NO) in bovine microvascular retinal endothelial cells (BRECs) under both static (basal and acetylcholine stimulated) and flow (laminar shear stress [10 dynes/cm2 and pulsatile flow 0.3 to 23 dynes/cm2) conditions using a laminar shear apparatus and an in vitro perfused transcapillary culture system. The activity and expression of eNOS, measured by nitrate levels and immunoblot, respectively, were determined following exposure of BRECs to varying concentrations of glucose and mannitol (0 to 25 mM). Under static conditions the expression of eNOS decreased significantly following exposure to increasing concentrations of glucose when compared to osmotic mannitol controls and was accompanied by a significant dose-dependent decrease in nitrate levels in conditioned medium. The acetylcholine stimulated increase in NO release (2.0 +/- 0.3-fold) was significantly reduced by 55% +/- 5% and 65% +/- 4.5% following exposure to 16 and 25 mM glucose, respectively, when compared to osmotic controls. In parallel studies, glucose significantly inhibited both laminar shear stress and pulsatile flow-induced activity when compared to mannitol. We conclude that hyperglycemia impairs agonist- and flow-dependent release of NO in retinal microvascular endothelial cells and may thus contribute to the vascular endothelial dysfunction and impaired autoregulation of diabetic retinopathy.

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