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首页> 外文期刊>Brazilian Journal of Medical and Biological Research >Gadolinium increases the vascular reactivity of rat aortic rings
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Gadolinium increases the vascular reactivity of rat aortic rings

机译:d增加大鼠主动脉环的血管反应性

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摘要

Gadolinium (Gd) blocks intra- and extracellular ATP hydrolysis. We determined whether Gd affects vascular reactivity to contractile responses to phenylephrine (PHE) by blocking aortic ectonucleoside triphosphate diphosphohydrolase (E-NTPDase). Wistar rats of both sexes (260-300 g, 23 females, 7 males) were used. Experiments were performed before and after incubation of aortic rings with 3 μM Gd. Concentration-response curves to PHE (0.1 nM to 0.1 mM) were obtained in the presence and absence of endothelium, after incubation with 100 μM L-NAME, 10 μM losartan, or 10 μM enalaprilat. Gd significantly increased the maximum response (control: 72.3 ± 3.5; Gd: 101.3 ± 6.4%) and sensitivity (control: 6.6 ± 0.1; Gd: 10.5 ± 2.8%) to PHE. To investigate the blockade of E-NTDase activity by Gd, we added 1 mM ATP to the bath. ATP reduced smooth muscle tension and Gd increased its relaxing effect (control: -33.5 ± 4.1; Gd: -47.4 ± 4.1%). Endothelial damage abolished the effect of Gd on the contractile responses to PHE (control: 132.6 ± 8.6; Gd: 122.4 ± 7.1%). L-NAME + Gd in the presence of endothelium reduced PHE contractile responses (control/L-NAME: 151.1 ± 28.8; L-NAME + Gd: 67.9 ± 19% AUC). ATP hydrolysis was reduced after Gd administration, which led to ATP accumulation in the nutrient solution and reduced ADP concentration, while adenosine levels remained the same. Incubation with Gd plus losartan and enalaprilat eliminated the pressor effects of Gd. Gd increased vascular reactivity to PHE regardless of the reduction of E-NTPDase activity and adenosine production. Moreover, the increased reactivity to PHE promoted by Gd was endothelium-dependent, reducing NO bioavailability and involving an increased stimulation of angiotensin-converting enzyme and angiotensin II AT1 receptors.
机译:d(Gd)阻止细胞内和细胞外ATP水解。我们确定Gd是否通过阻断主动脉外核苷三磷酸二磷酸水解酶(E-NTPDase)来影响血管反应性对苯肾上腺素(PHE)的收缩反应。使用两性的Wistar大鼠(260-300g,雌性23只,雄性7只)。在将主动脉环与3μMGd孵育之前和之后进行实验。与100μML-NAME,10μM氯沙坦或10μM依那普利拉孵育后,在有和没有内皮的情况下,获得了对PHE(0.1 nM至0.1 mM)的浓度-响应曲线。 Gd显着提高了对PHE的最大反应(对照:72.3±3.5; Gd:101.3±6.4%)和敏感性(对照:6.6±0.1; Gd:10.5±2.8%)。为了研究Gd对E-NTDase活性的阻断作用,我们向浴液中添加了1 mM ATP。 ATP降低了平滑肌张力,Gd增强了其放松效果(对照:-33.5±4.1; Gd:-47.4±4.1%)。内皮损伤消除了Gd对PHE的收缩反应的影响(对照:132.6±8.6; Gd:122.4±7.1%)。在内皮存在下,L-NAME + Gd降低了PHE收缩反应(对照/L-NAME:151.1±28.8; L-NAME + Gd:67.9±19%AUC)。施用Gd后ATP水解减少,这导致ATP在营养液中积累并降低ADP浓度,而腺苷水平保持不变。与Gd加氯沙坦和依那普利拉一起孵育可消除Gd的升压作用。无论E-NTPDase活性和腺苷生成量如何降低,Gd均可增加对PHE的血管反应性。此外,由Gd促进的对PHE的增加的反应性是内皮依赖性的,降低了NO的生物利用度,并增加了对血管紧张素转化酶和血管紧张素II AT1受体的刺激。

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