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人半胱氨酰白三烯2受体的定向血管表达调节内皮通透性和全身血压。

Directed vascular expression of human cysteinyl leukotriene 2 receptor modulates endothelial permeability and systemic blood pressure.

作者信息

Hui Yiqun, Cheng Yan, Smalera Isabella, Jian Wenying, Goldhahn Lawrence, Fitzgerald Garret A, Funk Colin D

机构信息

Center for Experimental Therapeutics and Department of Pharmacology, University of Pennsylvania, Philadelphia, Pa, USA.

出版信息

Circulation. 2004 Nov 23;110(21):3360-6. doi: 10.1161/01.CIR.0000147775.50954.AA. Epub 2004 Nov 15.

Abstract

BACKGROUND

The proinflammatory and vascular actions of cysteinyl leukotrienes (CysLTs) are mediated by 2 receptors: cysteinyl leukotriene 1 receptor (CysLT1R) and cysteinyl leukotriene 2 receptor (CysLT2R). However, the distinct contribution of CysLT2R to the vascular actions of CysLTs has not been addressed.

METHODS AND RESULTS

We generated an endothelial cell-specific human CysLT2R (EC-hCysLT2R) transgenic (TG) mouse model using the Tie2 promoter/enhancer. Strong expression of hCysLT2R in TG lung and endothelial cells, detected by real-time polymerase chain reaction, markedly enhanced CysLT-stimulated intracellular calcium mobilization compared with endogenous expression in cells from nontransgenic mice. The permeability response to exogenous LTC4 and to endogenous CysLTs evoked by passive cutaneous anaphylaxis was augmented in TG mice. The rapid, systemic pressor response to intravenous LTC4 was also diminished in TG mice coincidentally with augmented production of nitric oxide.

CONCLUSIONS

The development of EC-hCysLT2R mice has permitted detection of distinct vascular effects of CysLTs, which can be mediated via the CysLT2R in vivo.

摘要

背景

半胱氨酰白三烯(CysLTs)的促炎和血管作用由2种受体介导:半胱氨酰白三烯1受体(CysLT1R)和半胱氨酰白三烯2受体(CysLT2R)。然而,CysLT2R对CysLTs血管作用的独特贡献尚未得到研究。

方法与结果

我们使用Tie2启动子/增强子构建了一种内皮细胞特异性人CysLT2R(EC-hCysLT2R)转基因(TG)小鼠模型。通过实时聚合酶链反应检测到TG小鼠肺和内皮细胞中hCysLT2R的强表达,与非转基因小鼠细胞中的内源性表达相比,显著增强了CysLT刺激的细胞内钙动员。TG小鼠对被动皮肤过敏反应诱发的外源性LTC4和内源性CysLTs的通透性反应增强。TG小鼠对静脉注射LTC4的快速全身升压反应也减弱,同时一氧化氮生成增加。

结论

EC-hCysLT2R小鼠的建立使得能够检测到CysLTs独特的血管效应,其可在体内通过CysLT2R介导。

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