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- W2143177360 abstract "HomeHypertensionVol. 16, No. 4A kallikrein-like enzyme in blood vessels of one-kidney, one clip hypertensive rats. Free AccessAbstractPDF/EPUBAboutView PDFSections ToolsAdd to favoritesDownload citationsTrack citationsPermissions ShareShare onFacebookTwitterLinked InMendeleyReddit Jump toFree AccessAbstractPDF/EPUBA kallikrein-like enzyme in blood vessels of one-kidney, one clip hypertensive rats. H Nolly, O A Carretero, G Scicli, P Madeddu and A G Scicli H NollyH Nolly Hypertension Research Division, Henry Ford Hospital, Detroit, MI 48202. Search for more papers by this author , O A CarreteroO A Carretero Hypertension Research Division, Henry Ford Hospital, Detroit, MI 48202. Search for more papers by this author , G ScicliG Scicli Hypertension Research Division, Henry Ford Hospital, Detroit, MI 48202. Search for more papers by this author , P MadedduP Madeddu Hypertension Research Division, Henry Ford Hospital, Detroit, MI 48202. Search for more papers by this author and A G ScicliA G Scicli Hypertension Research Division, Henry Ford Hospital, Detroit, MI 48202. Search for more papers by this author Originally published1 Oct 1990https://doi.org/10.1161/01.HYP.16.4.436Hypertension. 1990;16:436–440AbstractActive and inactive kallikrein or a kallikrein-like enzyme are found in the aorta, vena cava, and tail artery and veins of the rat. We studied the concentration of vascular kininogenase in rats with one-kidney, one clip renovascular hypertension and in unilaterally nephrectomized normotensive rats. Six weeks after surgery, active and total vascular kininogenase activity (active plus trypsin-activated) was measured. Blood pressure was 212 +/- 4 mm Hg in the hypertensive rats (n = 33) and 120 +/- 1 mm Hg in the normotensive rats (n = 32) (p less than 0.001). Active kininogenase was lower in the hypertensive rats; although the difference was not significant in the thoracic aorta (56 +/- 8 versus 77 +/- 15), it was highly significant in the abdominal aorta (63 +/- 13 versus 167 +/- 17, p less than 0.001) and tail artery (48 +/- 8 versus 197 +/- 31, p less than 0.003). Total vascular kininogenase activity (active plus trypsin-activated) was lower in the hypertensive rats in all arteries examined: thoracic aorta (183 +/- 16 versus 380 +/- 38, p less than 0.003), abdominal aorta (565 +/- 61 versus 1,093 +/- 74, p less than 0.001), and tail artery (532 +/- 112 versus 1,243 +/- 135, p less than 0.003). Active kininogenase in the vena cava was higher in the hypertensive rats (213 +/- 56 versus 131 +/- 31); however, this difference was not statistically significant, whereas in the tail veins it was highly significant (1,803 +/- 221 versus 771 +/- 79, p less than 0.003).(ABSTRACT TRUNCATED AT 250 WORDS) Previous Back to top Next FiguresReferencesRelatedDetailsCited By Madeddu P and Kränkel N (2011) 9 Kallikrein-kinin system in the vessel wall Kinins, 10.1515/9783110252354.137, (137-154) Griol-Charhbili V, Sabbah L, Colucci J, Vincent M, Baudrie V, Laude D, Elghozi J, Bruneval P, Picard N, Meneton P, Alhenc-Gelas F and Richer C (2009) Tissue kallikrein deficiency and renovascular hypertension in the mouse, American Journal of Physiology-Regulatory, Integrative and Comparative Physiology, 10.1152/ajpregu.90411.2008, 296:5, (R1385-R1391), Online publication date: 1-May-2009. Qin X, Zeng S, Tian H, Deng S, Ren J, Zheng Y, Li D, Li Y, Liao D and Chen S (2009) INVOLVEMENT OF PROLYLCARBOXYPEPTIDASE IN THE EFFECT OF RUTAECARPINE ON THE REGRESSION OF MESENTERIC ARTERY HYPERTROPHY IN RENOVASCULAR HYPERTENSIVE RATS, Clinical and Experimental Pharmacology and Physiology, 10.1111/j.1440-1681.2008.05079.x, 36:3, (319-324), Online publication date: 1-Mar-2009. Madeddu P, Emanueli C and El-Dahr S (2007) Mechanisms of Disease: the tissue kallikrein–kinin system in hypertension and vascular remodeling, Nature Clinical Practice Nephrology, 10.1038/ncpneph0444, 3:4, (208-221), Online publication date: 1-Apr-2007. Brassard P, Amiri F and Schiffrin E (2005) Combined Angiotensin II Type 1 and Type 2 Receptor Blockade on Vascular Remodeling and Matrix Metalloproteinases in Resistance Arteries, Hypertension, 46:3, (598-606), Online publication date: 1-Sep-2005. Carretero O (2005) Vascular remodeling and the kallikrein-kinin system, Journal of Clinical Investigation, 10.1172/JCI24567, 115:3, (588-591), Online publication date: 1-Mar-2005. Emanueli C, Salis M, Chao J, Chao L, Agata J, Lin K, Munaò A, Straino S, Minasi A, Capogrossi M and Madeddu P (2000) Adenovirus-Mediated Human Tissue Kallikrein Gene Delivery Inhibits Neointima Formation Induced by Interruption of Blood Flow in Mice, Arteriosclerosis, Thrombosis, and Vascular Biology, 20:6, (1459-1466), Online publication date: 1-Jun-2000. Pamnani M, Chen S, Bryant H, Schooley J, Haddy F and Ghai R (2000) EFFECTS OF A NEUTRAL ENDOPROTEASE ENZYME INHIBITOR, THIORPHAN, ON HEMODYNAMICS AND RENAL EXCRETORY FUNCTION IN FOUR MODELS OF EXPERIMENTAL HYPERTENSION, Clinical and Experimental Hypertension, 10.1081/CEH-100100061, 22:1, (45-62), Online publication date: 1-Jan-2000. Carretero O (1999) Kinins in the Heart Hormones and the Heart in Health and Disease, 10.1007/978-1-59259-708-6_9, (137-158), . Madeddu P, Milia A, Salis M, Gaspa L, Gross W, Lippoldt A and Emanueli C (1998) Renovascular Hypertension in Bradykinin B2-Receptor Knockout Mice, Hypertension, 32:3, (503-509), Online publication date: 1-Sep-1998. Partovian C, Benetos A, Pommiès J, Mischler W and Safar M (1998) Effects of a chronic high-salt diet on large artery structure: role of endogenous bradykinin, American Journal of Physiology-Heart and Circulatory Physiology, 10.1152/ajpheart.1998.274.5.H1423, 274:5, (H1423-H1428), Online publication date: 1-May-1998. Benetos A, Levy B, Lacolley P, Taillard F, Duriez M and Safar M (1997) Role of Angiotensin II and Bradykinin on Aortic Collagen Following Converting Enzyme Inhibition in Spontaneously Hypertensive Rats, Arteriosclerosis, Thrombosis, and Vascular Biology, 17:11, (3196-3201), Online publication date: 1-Nov-1997. Schölkens B (1996) Kinins in the cardiovascular system, Immunopharmacology, 10.1016/0162-3109(96)00061-6, 33:1-3, (209-216), Online publication date: 1-Jun-1996. Carbini L, Scicli A and Carretero O (1996) The molecular biology of the kallikrein-kinin system Molecular Reviews in Cardiovascular Medicine, 10.1007/978-94-009-0083-7_16, (128-143), . Seyedi N, Xu X, Nasjletti A and Hintze T (1995) Coronary Kinin Generation Mediates Nitric Oxide Release After Angiotensin Receptor Stimulation, Hypertension, 26:1, (164-170), Online publication date: 1-Jul-1995. Bompart G, Tack I, Bascands J and Girolami J (1995) Intracellular Ca2+ depletion and Ca2+ channel blockers increase renal kallikrein secretion, European Journal of Pharmacology, 10.1016/0014-2999(95)00126-6, 278:3, (225-231), Online publication date: 1-May-1995. Uehara Y, Hirawa N, Kawabata Y, Suzuki T, Ohshima N, Oka K, Ikeda T, Goto A, Toyo-oka T and Kizuki K (1994) Long-term infusion of kallikrein attenuates renal injury in Dahl salt-sensitive rats., Hypertension, 24:6, (770-778), Online publication date: 1-Dec-1994.Nolly H, Carbini L, Scicli G, Carretero O and Scicli A (1994) A local kallikrein-kinin system is present in rat hearts., Hypertension, 23:6_pt_2, (919-923), Online publication date: 1-Jun-1994.Madeddu P, Varoni M, Demontis M, Fattaccio M, Parpaglia P and Glorioso N (1994) A kallikrein-like enzyme in the aorta of normotensive and hypertensive rats., Hypertension, 23:6_pt_2, (899-902), Online publication date: 1-Jun-1994.Madeddu P, Parpaglia P, Demontis M, Varoni M, Fattaccio M and Glorioso N (1994) Chronic inhibition of bradykinin B2-receptors enhances the slow vasopressor response to angiotensin II., Hypertension, 23:5, (646-652), Online publication date: 1-May-1994.Nolly H, Carretero O, Lama M, Miatello R and Scicli A (1994) Vascular kallikrein in deoxycorticosterone acetate-salt hypertensive rats., Hypertension, 23:1_supplement, (I185), Online publication date: 1-Jan-1994.Madeddu P, Parpaglia P, Demontis M, Varoni M, Fattaccio M, Tonolo G, Troffa C and Glorioso N (1993) Bradykinin B2-receptor blockade facilitates deoxycorticosterone-salt hypertension., Hypertension, 21:6_pt_2, (980-984), Online publication date: 1-Jun-1993. Madeddu P, Anania V, Parpaglia P, Demontis M, Varoni M, Fattaccio M and Glorioso N (2012) Chronic kinin receptor blockade induces hypertension in deoxycorticosterone-treated rats, British Journal of Pharmacology, 10.1111/j.1476-5381.1993.tb12856.x, 108:3, (651-657), Online publication date: 1-Mar-1993. Madeddu P, Anania V, Demontis M, Varoni M, Pisanu G, Troffa C, Tonolo G, Glorioso N and Parpaglia P (2012) Effects of Hoe 140, a bradykinin B2-receptor antagonist, on renal function in conscious normotensive rats, British Journal of Pharmacology, 10.1111/j.1476-5381.1992.tb14344.x, 106:2, (380-386), Online publication date: 1-Jun-1992. October 1990Vol 16, Issue 4 Advertisement Article InformationMetrics Copyright © 1990 by American Heart Associationhttps://doi.org/10.1161/01.HYP.16.4.436PMID: 2210811 Originally publishedOctober 1, 1990 PDF download Advertisement" @default.
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