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在 L-NAME 高血压小鼠模型中,增强的 A 腺苷受体诱导肠系膜动脉和主动脉收缩。

Enhanced A adenosine receptor-induced vascular contractions in mesenteric artery and aorta of in L-NAME mouse model of hypertension.

机构信息

Department of Physiology and Pharmacology, West Virginia University, Morgantown, WV, USA.

Coagulation and Blood Research Task Area, US Army Institute of Surgical Research, San Antonio, TX, USA.

出版信息

Eur J Pharmacol. 2019 Jan 5;842:111-117. doi: 10.1016/j.ejphar.2018.10.024. Epub 2018 Oct 19.

Abstract

L-NAME-induced hypertension is commonly used to study endothelial dysfunction and related vascular effects. It has been reported that genetic deletion of A adenosine receptor (AR) reduces blood pressure (BP) increases in mice and thus, suggesting the involvement of AAR. Thus, we sought to determine whether AAR-induced vascular responses were altered in this mouse model of hypertension. L-NAME (1 mg/ml) was given in the drinking water for 28 days to mice. The BP was monitored using non-invasive tail-cuff system. Muscle tension studies were performed using DMT for mesenteric arteries (MAs) and organ bath for aorta. Protein expression was analyzed by western blot. Significantly, higher systolic and mean arterial blood pressure was noted in L-NAME mice. In MAs, higher 2-Chloro-N-cyclopentyladenosine (CCPA, selective AAR agonist) induced contractions in hypertensive mice were observed. This enhanced contraction was inhibited by HET0016 (Cytochrome 450 4A inhibitor, 10 µM, 15 min). Contrary, 5'-(N-Ethylcarboxamido) adenosine (NECA, non-selective AR agonist) induced vascular responses were comparable in both groups. Pinacidil (K channel opener) induced relaxation was significantly increased in hypertensive mice. In aorta, CCPA-induced contractions were enhanced and inhibited by HET0016 in hypertensive mice. Notably, NECA-induced contractions in aorta were enhanced in hypertensive mice. Higher expressions of AAR and Cyp4A were noted in MAs of hypertensive mice. In addition, in aorta, higher AAR and comparable Cyp4A levels were observed in hypertensive mice. AAR-induced vascular contractions were enhanced in hypertensive mice aorta and MAs. Cyp4A plays a role in altered vascular responses in MAs.

摘要

L-NAME 诱导的高血压常用于研究内皮功能障碍和相关的血管效应。据报道,A 腺苷受体 (AR) 的基因缺失可降低小鼠的血压升高,因此,提示 AAR 的参与。因此,我们试图确定这种高血压小鼠模型中 AAR 诱导的血管反应是否发生改变。将 L-NAME(1mg/ml)添加到饮用水中,供小鼠饮用 28 天。使用非侵入性尾套系统监测血压。使用 DMT 进行肠系膜动脉 (MAs) 和器官浴进行主动脉的肌肉张力研究。通过 Western blot 分析蛋白表达。值得注意的是,L-NAME 小鼠的收缩压和平均动脉压均升高。在 MAs 中,观察到高血压小鼠中更高的 2-氯-N-环戊基腺苷(CCPA,选择性 AAR 激动剂)诱导的收缩。这种增强的收缩被 HET0016(细胞色素 450 4A 抑制剂,10µM,15 分钟)抑制。相反,5'-(N-乙基羧酰胺)腺苷(NECA,非选择性 AR 激动剂)诱导的血管反应在两组之间相当。在高血压小鼠中,Pinacidil(K 通道开放剂)诱导的松弛显著增加。在主动脉中,CCPA 诱导的收缩在高血压小鼠中被 HET0016 增强和抑制。值得注意的是,高血压小鼠中 NECA 诱导的收缩增强。高血压小鼠 MAs 中 AAR 和 Cyp4A 的表达更高。此外,在主动脉中,高血压小鼠中 AAR 和可比的 Cyp4A 水平更高。AAR 诱导的血管收缩在高血压小鼠的主动脉和 MAs 中增强。Cyp4A 在 MAs 中改变的血管反应中起作用。

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