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Andersons pediatric cardiology 1988

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dilation of human coronary arterioles: important role of Ca(2+)-activated k(+) channels Circulation 2001;103:1992–1998 85 Olesen SP, Clapham DE, Davies PF Haemodynamic shear stress activates a k+ current in endothelial cells Nature 1988;331:168–170 86 Pohl U, Holtz J, Busse R, et al Crucial role of the endothelium in the vasodilator response to flow in vivo Hypertension 1986;8:37–44 87 Griffith TM, Edwards DH, Davies RL, et al EDRF coordinates the behaviour of vascular resistance vessels Nature 1987;329:442–445 88 Lavoie JL, Sigmund CD Minireview: overview of the renin-angiotensin system—an endocrine and paracrine system Endocrinology 2003;144:2179–2183 89 Paul M, Poyan Mehr A, Kreutz R Physiology of local renin-angiotensin systems Physiol Rev 2006;86:747–803 90 Hilgers KF, Veelken R, Muller DN, et al Renin uptake by the endothelium mediates vascular angiotensin formation Hypertension 2001;38:243–248 91 Rossi GP, Sacchetto A, Cesari M, et al Interactions between endothelin-1 and the reninangiotensin-aldosterone system Cardiovasc Res 1999;43:300–307 92 Schulman IH, Zhou MS, Raij L Nitric oxide, angiotensin II, and reactive oxygen species in hypertension and atherogenesis Curr Hypertens Rep 2005;7:61–67 93 Hanna IR, Taniyama Y, Szocs K, et al NAD(P)h oxidase-derived reactive oxygen species as mediators of angiotensin II signaling Antioxid Redox Signal 2002;4:899–914 94 Batenburg WW, Tom B, Schuijt MP, et al Angiotensin II type 2 receptor-mediated vasodilation: focus on bradykinin, NO and endothelium-derived hyperpolarizing factor(s) Vascul Pharmacol 2005;42:109–118 95 Reudelhuber TL The renin-angiotensin system: peptides and enzymes beyond angiotensin II Curr Opin Nephrol Hypertens 2005;14:155– 159 96 Levin ER, Gardner DG, Samson WK Natriuretic peptides N Engl J Med 1998;339:321–328 97 Suttner SW, Boldt J Natriuretic peptide system: physiology and clinical utility Curr Opin Crit Care 2004;10:336–341 98 Schultz HD, Gardner DG, Deschepper CF, et al Vagal C-fiber blockade abolishes sympathetic inhibition by atrial natriuretic factor Am J Physiol 1988;255:R6–R13 99 Yang RH, Jin HK, Wyss JM, et al Pressor effect of blocking atrial natriuretic peptide in nucleus tractus solitarii Hypertension 1992;19:198–205 100 Stein BC, Levin RI Natriuretic peptides: physiology, therapeutic potential, and risk stratification in ischemic heart disease Am Heart J 1998;135:914–923 101 Baughman KL B-type natriuretic peptide—a window to the heart N Engl J Med 2002;347:158–159 102 Marin-Grez M, Fleming JT, Steinhausen M Atrial natriuretic peptide causes pre-glomerular vasodilatation and post-glomerular vasoconstriction in rat kidney Nature 1986;324:473–476 103 Kitamura K, Kangawa K, Kawamoto M, et al Adrenomedullin: a novel hypotensive peptide isolated from human pheochromocytoma Biochem Biophys Res Commun 1993;192:553– 560 104 Sugo S, Minamino N, Kangawa K, et al Endothelial cells actively synthesize and secrete adrenomedullin Biochem Biophys Res Commun 1994;201:1160–1166 105 Sugo S, Minamino N, Shoji H, et al Production and secretion of adrenomedullin from vascular smooth muscle cells: augmented production by ... Vagal C-fiber blockade abolishes sympathetic inhibition by atrial natriuretic factor Am J Physiol 1988; 255:R6–R13 99 Yang RH, Jin HK, Wyss JM, et al Pressor effect of blocking atrial natriuretic peptide in nucleus

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