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Articles

Angiotensin II Is a Critical Mediator of Prazosin-Induced Angiogenesis in Skeletal Muscle

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Pages 583-591 | Received 17 May 2006, Accepted 01 Dec 2006, Published online: 10 Jul 2009

REFERENCES

  • Amaral S L, Linderman J R, Morse M M, Greene A S. Angiogenesis induced by electrical stimulation is mediated by angiotensin II and VEGF. Microcirculation 2001; 8: 57–67
  • Amaral S L, Maier K G, Schippers D N, Roman R J, Greene A S. CYP4A metabolites of arachidonic acid and VEGF are mediators of skeletal muscle angiogenesis. Am J Physiol Heart Circ Physiol 2003; 284: H1528–H1535
  • Amaral S L, Papanek P E, Greene A S. Angiotensin II and VEGF are involved in angiogenesis induced by short-term exercise training. Am J Physiol Heart Circ Physiol 2001; 281: H1163–H1169
  • Amaral S L, Roman R J, Greene A S. Renin gene transfer restores angiogenesis and vascular endothelial growth factor expression in Dahl S rats. Hypertension 2001; 37: 386–390
  • Babaei S, Stewart D J. Overexpression of endothelial NO synthase induces angiogenesis in a co-culture model. Cardiovasc Res 2002; 55: 190–200
  • Baum O, Da Silva-Azevedo L, Willerding G, Wockel A, Planitzer G, Gossrau R, Pries A R, Zakrzewicz A. Endothelial NOS is main mediator for shear stress-dependent angiogenesis in skeletal muscle after prazosin administration. Am J Physiol Heart Circ Physiol 2004; 287: H2300–H2308
  • Benoit H, Jordan M, Wagner H, Wagner P D. Effect of NO, vasodilator prostaglandins, and adenosine on skeletal muscle angiogenic growth factor gene expression. J Appl Physiol 1999; 86: 1513–1518
  • Boegehold M A. Effect of dietary salt on arteriolar nitric oxide in striated muscle of normotensive rats. Am J Physiol 1993; 264: H1810–H1816
  • Boegehold M A. Flow-dependent arteriolar dilation in normotensive rats fed low- or high-salt diets. Am J Physiol 1995; 269: H1407–H1414
  • Cai J, Jiang W G, Ahmed A, Boulton M. Vascular endothelial growth factor-induced endothelial cell proliferation is regulated by interaction between VEGFR-2, SH-PTP1 and eNOS. Microvasc Res 2005
  • Chen B P, Li Y S, Zhao Y, Chen K D, Li S, Lao J, Yuan S, Shyy J Y, Chien S. DNA microarray analysis of gene expression in endothelial cells in response to 24-h shear stress. Physiol Genomics 2001; 7: 55–63
  • Djonov V G, Kurz H, Burri P H. Optimality in the developing vascular system: branching remodeling by means of intussusception as an efficient adaptation mechanism. Dev Dyn 2002; 224: 391–402
  • Egginton S, Hudlicka O. Selective long-term electrical stimulation of fast glycolytic fibres increases capillary supply but not oxidative enzyme activity in rat skeletal muscles. Exp Physiol 2000; 85: 567–573
  • Egginton S, Zhou A L, Brown M D, Hudlicka O. Unorthodox angiogenesis in skeletal muscle. Cardiovasc Res 2001; 49: 634–646
  • Emanueli C, Salis M B, Stacca T, Pinna A, Gaspa L, Madeddu P. Angiotensin AT(1) receptor signalling modulates reparative angiogenesis induced by limb ischaemia. Br J Pharmacol 2002; 135: 87–92
  • Fujiyama S, Matsubara H, Nozawa Y, Maruyama K, Mori Y, Tsutsumi Y, Masaki H, Uchiyama Y, Koyama Y, Nose A, Iba O, Tateishi E, Ogata N, Jyo N, Higashiyama S, Iwasaka T. Angiotensin AT(1) and AT(2) receptors differentially regulate angiopoietin-2 and vascular endothelial growth factor expression and angiogenesis by modulating heparin binding-epidermal growth factor (EGF)-mediated EGF receptor transactivation. Circ Res 2001; 88: 22–29
  • Hikichi T, Mori F, Takamiya A, Sasaki M, Horikawa Y, Takeda M, Yoshida A. Inhibitory effect of losartan on laser-induced choroidal neovascularization in rats. Am J Ophthalmol 2001; 132: 587–589
  • Ichioka S, Shibata M, Kosaki K, Sato Y, Harii K, Kamiya A. Effects of shear stress on wound-healing angiogenesis in the rabbit ear chamber. J Surg Res 1997; 72: 29–35
  • Ichioka S, Shibata M, Kosaki K, Sato Y, Harii K, Kamiya A. In vivo measurement of morphometric and hemodynamic changes in the microcirculation during angiogenesis under chronic alpha1-adrenergic blocker treatment. Microvasc Res 1998; 55: 165–174
  • Milkiewicz M, Brown M D, Egginton S, Hudlicka O. Association between shear stress, angiogenesis, and VEGF in skeletal muscles in vivo. Microcirculation 2001; 8: 229–241
  • Milkiewicz M, Hudlicka O, Brown M D, Silgram H. Nitric oxide, VEGF, and VEGFR-2: interactions in activity-induced angiogenesis in rat skeletal muscle. Am J Physiol Heart Circ Physiol 2005; 289: H336–H343
  • Montiel M, de la Blanca E P, Jimenez E. Angiotensin II induces focal adhesion kinase/paxillin phosphorylation and cell migration in human umbilical vein endothelial cells. Biochem Biophys Res Commun 2005; 327: 971–978
  • Munzenmaier D H, Greene A S. Chronic angiotensin II AT1 receptor blockade increases cerebral cortical microvessel density. Am J Physiol Heart Circ Physiol 2005; 290: H512–H516
  • Munzenmaier D H, Greene A S. Opposing actions of angiotensin II on microvascular growth and arterial blood pressure. Hypertension 1996; 27: 760–765
  • Petersen M C, Munzenmaier D H, Greene A S. Angiotensin II infusion restores stimulated angiogenesis in the skeletal muscle of rats on a high salt diet. Am J Physiol Heart Circ Physiol 2006; 291: H114–H120
  • Rieder M J, O'Drobinak D M, Greene A S. A computerized method for determination of microvascular density. Microvasc Res 1995; 49: 180–189
  • Rieder M JRR, Greene A S. Reversal of microvascular rarefaction and reduced renal mass hypertension. Hypertension 1997; 30: 120–127
  • Sasaki K, Murohara T, Ikeda H, Sugaya T, Shimada T, Shintani S, Imaizumi T. Evidence for the importance of angiotensin II type 1 receptor in ischemia-induced angiogenesis. J Clin Invest 2002; 109: 603–611
  • Shihab F S, Bennett W M, Isaac J, Yi H, Andoh T F. Angiotensin II regulation of vascular endothelial growth factor and receptors Flt-1 and KDR/Flk-1 in cyclosporine nephrotoxicity. Kidney Int 2002; 62: 422–433
  • Tamarat R, Silvestre J S, Durie M, Levy B I. Angiotensin II angiogenic effect in vivo involves vascular endothelial growth factor- and inflammation-related pathways. Lab Invest 2002; 82: 747–756
  • Tamarat R, Silvestre J S, Kubis N, Benessiano J, Duriez M, de Gasparo M, Henrion D, Levy B I. Endothelial nitric oxide synthase lies downstream from angiotensin II-induced angiogenesis in ischemic hindlimb. Hypertension 2002; 39: 830–835
  • Williams J L, Cartland D, Hussain A, Egginton S. A differential role for nitric oxide in two forms of physiological angiogenesis in mouse. J Physiol 2006; 570: 445–454
  • Williams J L, Cartland D, Rudge J S, Egginton S. VEGF trap abolishes shear stress- and overload-dependent angiogenesis in skeletal muscle. Microcirculation 2006; 13: 499–509
  • Williams J L, Weichert A, Zakrzewicz A, Da Silva-Azevedo L, Pries A R, Baum O, Egginton S. Differential gene and protein expression in abluminal sprouting and intraluminal splitting forms of angiogenesis. Clin Sci (Lond) 2006; 110: 587–595
  • Zhou A, Egginton S, Hudlicka O, Brown M D. Internal division of capillaries in rat skeletal muscle in response to chronic vasodilator treatment with alpha1-antagonist prazosin. Cell Tissue Res 1998; 293: 293–303
  • Zhu J, Mori T, Huang T, Lombard J H. Effect of high-salt diet on NO release and superoxide production in rat aorta. Am J Physiol Heart Circ Physiol 2004; 286: H575–H583

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