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首页> 外文期刊>Journal of Radiation Research: Official Organ of the Japan Radiation Research Society >Involvement of inducible nitric oxide synthase in radiation-Induced vascular endothelial damage
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Involvement of inducible nitric oxide synthase in radiation-Induced vascular endothelial damage

机译:诱导型一氧化氮合酶参与辐射诱导的血管内皮损伤

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The use of radiation therapy has been linked to an increased risk of cardiovascular disease. To understand the mechanisms underlying radiation-induced vascular dysfunction, we employed two models. First, we examined the effect of X-ray irradiation on vasodilation in rabbit carotid arteries. Carotid arterial rings were irradiated with 8 or 16 Gy using in vivo and ex vivo methods. We measured the effect of acetylcholine-induced relaxation after phenylephrine-induced contraction on the rings. In irradiated carotid arteries, vasodilation was significantly attenuated by both irradiation methods. The relaxation response was completely blocked by 1H-[1,2,4]oxadiazolo[4,3- a]quinoxalin-1-one, a potent inhibitor of soluble guanylate cyclase. Residual relaxation persisted after treatment with L-Nω-nitroarginine (L-NA), a non-specific inhibitor of nitric oxide synthase (NOS), but disappeared following the addition of aminoguanidine (AG), a selective inhibitor of inducible NOS (iNOS). The relaxation response was also affected by tetraethylammonium, an inhibitor of endothelium-derived hyperpolarizing factor activity. In the second model, we investigated the biochemical events of nitrosative stress in human umbilical-vein endothelial cells (HUVECs). We measured iNOS and nitrotyrosine expression in HUVECs exposed to a dose of 4 Gy. The expression of iNOS and nitrotyrosine was greater in irradiated HUVECs than in untreated controls. Pretreatment with AG, L-N~6-(1-iminoethyl) lysine hydrochloride (a selective inhibitor of iNOS), and L-NA attenuated nitrosative stress. While a selective target of radiation-induced vascular endothelial damage was not definitely determined, these results suggest that NO generated from iNOS could contribute to vasorelaxation. These studies highlight a potential role of iNOS inhibitors in ameliorating radiation-induced vascular endothelial damage.
机译:放射疗法的使用与心血管疾病的风险增加有关。为了了解潜在的辐射诱发的血管功能障碍的机制,我们采用了两种模型。首先,我们检查了X射线辐射对兔颈动脉血管舒张的影响。使用体内和离体方法用8或16 Gy照射颈动脉环。我们测量了苯肾上腺素引起的环收缩后乙酰胆碱引起的舒张作用。在受辐照的颈动脉中,两种辐照方法均显着减弱了血管舒张。松弛反应被1H- [1,2,4]恶二唑并[4,3-a]喹喔啉-1-酮(一种可溶性鸟苷酸环化酶的有效抑制剂)完全阻断。用一氧化氮合酶(NOS)的非特异性抑制剂L-Nω-硝基精氨酸(L-NA)处理后,残留的松弛作用仍然存在,但在加入了可诱导性NOS的选择性抑制剂(iNOS)氨基胍(AG)后消失了。 。松弛反应还受到内皮源超极化因子活性抑制剂四乙铵的影响。在第二个模型中,我们研究了人脐静脉内皮细胞(HUVEC)中亚硝化应激的生化事件。我们测量了暴露于4 Gy剂量的HUVEC中iNOS和硝基酪氨酸的表达。辐照过的HUVEC中iNOS和硝基酪氨酸的表达高于未处理的对照组。用AG,L-N〜6-(1-亚氨基乙基)赖氨酸盐酸盐(iNOS的选择性抑制剂)和L-NA预处理可减轻亚硝化胁迫。虽然不确定确定辐射诱导的血管内皮损伤的选择性靶标,但这些结果表明,iNOS产生的NO可能有助于血管舒张。这些研究突显了iNOS抑制剂在改善辐射引起的血管内皮损伤中的潜在作用。

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