Genetic deletion of aquaporin-1 results in microcardia and low blood pressure in mouse with intact nitric oxide-dependent relaxation, but enhanced prostanoids-dependent relaxation

被引:0
作者
V. Montiel
E. Leon Gomez
C. Bouzin
H. Esfahani
M. Romero Perez
I. Lobysheva
O. Devuyst
C. Dessy
J. L. Balligand
机构
[1] Université catholique de Louvain,Pole of Pharmacology and Therapeutics (FATH), Institut de Recherche Expérimentale et Clinique (IREC)
[2] Cliniques Universitaires Saint-Luc,Department of Medicine
[3] Université catholique de Louvain,Pole of Nephrology (NEFR), Institut de Recherche Expérimentale et Clinique (IREC)
来源
Pflügers Archiv - European Journal of Physiology | 2014年 / 466卷
关键词
Aquaporins; Blood pressure; NO-dependent and independent endothelial function pathway; Prostaglandins;
D O I
暂无
中图分类号
学科分类号
摘要
The water channels, aquaporins (AQPs) are key mediators of transcellular fluid transport. However, their expression and role in cardiac tissue is poorly characterized. Particularly, AQP1 was suggested to transport other molecules (nitric oxide (NO), hydrogen peroxide (H2O2)) with potential major bearing on cardiovascular physiology. We therefore examined the expression of all AQPs and the phenotype of AQP1 knockout mice (vs. wild-type littermates) under implanted telemetry in vivo, as well as endothelium-dependent relaxation in isolated aortas and resistance vessels ex vivo. Four aquaporins were expressed in wild-type heart tissue (AQP1, AQP7, AQP4, AQP8) and two aquaporins in aortic and mesenteric vessels (AQP1–AQP7). AQP1 was expressed in endothelial as well as cardiac and vascular muscle cells and co-segregated with caveolin-1. AQP1 knockout (KO) mice exhibited a prominent microcardia and decreased myocyte transverse dimensions despite no change in capillary density. Both male and female AQP1 KO mice had lower mean BP, which was not attributable to altered water balance or autonomic dysfunction (from baroreflex and frequency analysis of BP and HR variability). NO-dependent BP variability was unperturbed. Accordingly, endothelium-derived hyperpolarizing factor (EDH(F)) or NO-dependent relaxation were unchanged in aorta or resistance vessels ex vivo. However, AQP1 KO mesenteric vessels exhibited an increase in endothelial prostanoids-dependent relaxation, together with increased expression of COX-2. This enhanced relaxation was abrogated by COX inhibition. We conclude that AQP1 does not regulate the endothelial EDH or NO-dependent relaxation ex vivo or in vivo, but its deletion decreases baseline BP together with increased prostanoids-dependent relaxation in resistance vessels. Strikingly, this was associated with microcardia, unrelated to perturbed angiogenesis. This may raise interest for new inhibitors of AQP1 and their use to treat hypertrophic cardiac remodeling.
引用
收藏
页码:237 / 251
页数:14
相关论文
共 288 条
  • [11] Kelley EE(2008)Absence of cyclooxygenase-2 exacerbates hypoxia-induced pulmonary hypertension and enhances contractility of vascular smooth muscle cells Circulation 117 2114-162
  • [12] Egana LA(2005)Regulation of intermediary metabolism in rat cardiac myocyte by extracellular glycerol Biochim Biophys Acta 1736 152-H1606
  • [13] Song GJ(2007)Extracellular glycerol regulates the cardiac energy balance in a working rat heart model Am J Physiol Heart Circ Physiol 292 H1600-12152
  • [14] Bisello A(2001)The water channel aquaporin-8 is mainly intracellular in rat hepatocytes, and its plasma membrane insertion is stimulated by cyclic AMP J Biol Chem 276 12147-95
  • [15] Lee YJ(2008)Dysfunction of AQP7 in the periadventitial fat: a novel trigger of atherosclerosis Med Hypotheses 70 92-825
  • [16] Pagano PJ(2001)Effects of selective cyclooxygenase-2 inhibition on vascular responses and thrombosis in canine coronary arteries Circulation 104 820-F1451
  • [17] Beitz E(2007)Novel role of AQP-1 in NO-dependent vasorelaxation Am J Physiol Ren Physiol 292 F1443-630
  • [18] Wu B(2011)Aquaporins as gas channels Pflugers Arch 462 623-41
  • [19] Holm LM(2009)The heart requires glycerol as an energy substrate through aquaporin 7, a glycerol facilitator Cardiovasc Res 83 34-685
  • [20] Schultz JE(2012)Expression of aquaporins in rat liver regeneration Scand J Gastroenterol 47 676-R576