首页> 美国卫生研究院文献>American Journal of Physiology - Heart and Circulatory Physiology >Blunted flow-mediated responses and diminished nitric oxide synthase expression in lymphatic thoracic ducts of a rat model of metabolic syndrome
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Blunted flow-mediated responses and diminished nitric oxide synthase expression in lymphatic thoracic ducts of a rat model of metabolic syndrome

机译:大鼠代谢综合征模型的淋巴胸管中钝化的血流介导的反应和一氧化氮合酶表达的减少

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摘要

Shear-dependent inhibition of lymphatic thoracic duct (TD) contractility is principally mediated by nitric oxide (NO). Endothelial dysfunction and poor NO bioavailability are hallmarks of vasculature dysfunction in states of insulin resistance and metabolic syndrome (MetSyn). We tested the hypothesis that flow-dependent regulation of lymphatic contractility is impaired under conditions of MetSyn. We utilized a 7-wk high-fructose-fed male Sprague-Dawley rat model of MetSyn and determined the stretch- and flow-dependent contractile responses in an isobaric ex vivo TD preparation. TD diameters were tracked and contractile parameters were determined in response to different transmural pressures, imposed flow, exogenous NO stimulation by S-nitro-N-acetylpenicillamine (SNAP), and inhibition of NO synthase (NOS) by l-nitro-arginine methyl ester (l-NAME) and the reactive oxygen species (ROS) scavenging molecule 4-hydroxy-tempo (tempol). Expression of endothelial NO synthase (eNOS) in TD was determined using Western blot. Approximately 25% of the normal flow-mediated inhibition of contraction frequency was lost in TDs isolated from MetSyn rats despite a comparable SNAP response. Inhibition of NOS with l-NAME abolished the differences in the shear-dependent contraction frequency regulation between control and MetSyn TDs, whereas tempol did not restore the flow responses in MetSyn TDs. We found a significant reduction in eNOS expression in MetSyn TDs suggesting that diminished NO production is partially responsible for impaired flow response. Thus our data provide the first evidence that MetSyn conditions diminish eNOS expression in TD endothelium, thereby affecting the flow-mediated changes in TD lymphatic function.
机译:剪切依赖性抑制淋巴管(TD)收缩力主要由一氧化氮(NO)介导。内皮功能障碍和NO生物利用度差是在胰岛素抵抗和代谢综合征(MetSyn)状态下脉管功能障碍的标志。我们测试了以下假设:在MetSyn的条件下,淋巴收缩力的流量依赖性调节受到损害。我们利用了MetSyn的7周高果糖喂养雄性Sprague-Dawley大鼠模型,并确定了等压离体TD制剂中依赖于拉伸和血流的收缩反应。跟踪TD直径并响应不同的透壁压力,施加流量,S-硝基-N-乙酰青霉胺(SNAP)刺激外源NO以及L-硝基-精氨酸甲酯抑制NO合酶(NOS)来确定收缩参数(l-NAME)和活性氧(ROS)清除分子4-羟基-tempo(tempol)。使用蛋白质印迹法测定TD中的内皮NO合酶(eNOS)的表达。尽管有相当的SNAP响应,但从MetSyn大鼠分离的TD中约有25%的正常血流介导的收缩频率抑制消失。用I-NAME抑制NOS消除了对照和MetSyn TD之间剪切依赖性收缩频率调节的差异,而tempol不能恢复MetSyn TD中的流动响应。我们发现MetSyn TD中eNOS的表达显着降低,这表明NO生成减少是造成流量响应受损的部分原因。因此,我们的数据提供了第一个证据,证明MetSyn条件会降低TD内皮中eNOS的表达,从而影响TD淋巴功能的流量介导的变化。

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