Literature DB >> 9180624

Renin-angiotensin system components in the interstitial fluid of the isolated perfused rat heart. Local production of angiotensin I.

L M de Lannoy1, A H Danser, J P van Kats, R G Schoemaker, P R Saxena, M A Schalekamp.   

Abstract

We used a modification of the isolated perfused rat heart, in which coronary effluent and interstitial transudate were separately collected, to investigate the uptake and clearance of exogenous renin, angiotensinogen, and angiotensin I (Ang I) as well as the cardiac production of Ang I. The levels of these compounds in interstitial transudate were considered to be representative of the levels in the cardiac interstitial fluid. During perfusion with renin or angiotensinogen, the steady-state levels (mean +/- SD) in interstitial transudate were 64 +/- 34% (P < .05 for difference from the arterial level, n = 8) and 108 +/- 42% (n = 6) of the arterial level, respectively; the levels in coronary effluent were not significantly different from those in interstitial transudate. Ang I was not detectable in interstitial transudate during perfusion with Tyrode's buffer or angiotensinogen. It was very low in interstitial transudate during perfusion with renin and rose to much higher levels during combined renin and angiotensinogen perfusion. The total production rate of Ang I present in interstitial fluid could be largely explained by the renin-angiotensinogen reaction in the fluid phase of the interstitial compartment. In contrast, the total production rate of Ang I present in coronary effluent and the net ejection rate of Ang I via coronary effluent were, respectively, 4.6 +/- 2.2 and 2.8 +/- 1.3 (P < .01 and P < .05 for difference from 1.0, n = 6) times higher than could be explained by Ang I formation in the fluid phase of the intravascular compartment. Ang I from the interstitial fluid contributed little to the Ang I in the intravascular fluid and vice versa. These data reveal two tissue sites of Ang I production, ie, the interstitial fluid and a site closer to the blood compartment, possibly vascular surface-bound renin. There was no evidence that the release of locally produced Ang I into coronary effluent and interstitial transudate occurred independently of blood-derived renin or angiotensinogen.

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Year:  1997        PMID: 9180624     DOI: 10.1161/01.hyp.29.6.1240

Source DB:  PubMed          Journal:  Hypertension        ISSN: 0194-911X            Impact factor:   10.190


  21 in total

1.  Vasoconstriction is determined by interstitial rather than circulating angiotensin II.

Authors:  Martin P Schuijt; René de Vries; Pramod R Saxena; Maarten A D H Schalekamp; A H Jan Danser
Journal:  Br J Pharmacol       Date:  2002-01       Impact factor: 8.739

2.  Optimum AT1 receptor-neprilysin inhibition has superior cardioprotective effects compared with AT1 receptor blockade alone in hypertensive rats.

Authors:  Lodi C W Roksnoer; Richard van Veghel; René de Vries; Ingrid M Garrelds; Usha M Bhaggoe; Edith C H Friesema; Frank P J Leijten; Marko Poglitsch; Oliver Domenig; Marian C Clahsen-van Groningen; Ewout J Hoorn; A H Jan Danser; Wendy W Batenburg
Journal:  Kidney Int       Date:  2015-04-01       Impact factor: 10.612

3.  Differential regulation of angiotensin-(1-12) in plasma and cardiac tissue in response to bilateral nephrectomy.

Authors:  Carlos M Ferrario; Jasmina Varagic; Javad Habibi; Sayaka Nagata; Johji Kato; Mark C Chappell; Aaron J Trask; Kazuo Kitamura; Adam Whaley-Connell; James R Sowers
Journal:  Am J Physiol Heart Circ Physiol       Date:  2009-02-13       Impact factor: 4.733

4.  Pathological Ace2-to-Ace enzyme switch in the stressed heart is transcriptionally controlled by the endothelial Brg1-FoxM1 complex.

Authors:  Jin Yang; Xuhui Feng; Qiong Zhou; Wei Cheng; Ching Shang; Pei Han; Chiou-Hong Lin; Huei-Sheng Vincent Chen; Thomas Quertermous; Ching-Pin Chang
Journal:  Proc Natl Acad Sci U S A       Date:  2016-09-06       Impact factor: 11.205

5.  Genomic and nongenomic effects of aldosterone in the rat heart: why is spironolactone cardioprotective?

Authors:  Wenxia Chai; Ingrid M Garrelds; Udayasankar Arulmani; Regien G Schoemaker; Jos M J Lamers; A H Jan Danser
Journal:  Br J Pharmacol       Date:  2005-07       Impact factor: 8.739

Review 6.  Urinary markers of intrarenal renin-angiotensin system activity in vivo.

Authors:  Lodi C W Roksnoer; Koen Verdonk; Anton H van den Meiracker; Ewout J Hoorn; Robert Zietse; A H Jan Danser
Journal:  Curr Hypertens Rep       Date:  2013-04       Impact factor: 5.369

7.  A Randomized Trial of Distal Diuretics versus Dietary Sodium Restriction for Hypertension in Chronic Kidney Disease.

Authors:  Dominique M Bovée; Wesley J Visser; Igor Middel; Anneke De Mik-van Egmond; Rick Greupink; Rosalinde Masereeuw; Frans G M Russel; A H Jan Danser; Robert Zietse; Ewout J Hoorn
Journal:  J Am Soc Nephrol       Date:  2020-01-29       Impact factor: 10.121

8.  The macula densa prorenin receptor is essential in renin release and blood pressure control.

Authors:  Anne D M Riquier-Brison; Arnold Sipos; Ágnes Prókai; Sarah L Vargas; Lldikó Toma; Elliott J Meer; Karie G Villanueva; Jennifer C M Chen; Georgina Gyarmati; Christopher Yih; Elaine Tang; Bahram Nadim; Sujith Pendekanti; Ingrid M Garrelds; Genevieve Nguyen; A H Jan Danser; János Peti-Peterdi
Journal:  Am J Physiol Renal Physiol       Date:  2018-04-18

9.  The Inverted Heart Model for Interstitial Transudate Collection from the Isolated Rat Heart.

Authors:  Kezhe Tan; Zhaoping Ding; Bodo Steckel; Sonja Hartwig; Stefan Lehr; Xiaoming Deng; Jürgen Schrader
Journal:  J Vis Exp       Date:  2017-06-20       Impact factor: 1.355

Review 10.  Is angiotensin II made inside or outside of the cell?

Authors:  Wenxia Chai; A H Jan Danser
Journal:  Curr Hypertens Rep       Date:  2005-04       Impact factor: 5.369

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