Literature DB >> 14566076

Hypotensive function of the brain angiotensin-(1-7) in Sprague Dawley and renin transgenic rats.

J Dobruch1, P Paczwa, S Łoń, M C Khosla, E Szczepańska-Sadowska.   

Abstract

Angiotensin-(1-7) (Ang-[1-7]) is present in the brain of normotensive Sprague Dawley (SD) rats, and its hypothalamic content is elevated in TGRmRen2(27) rats (TGR) with renin dependent transgenic hypertension. The purpose of the present study was to determine the role of intrabrain Ang-(1-7) in the regulation of cardiovascular functions in SD and TGR rats under resting conditions and during haemodynamic challenge produced by rapid bleeding. Two groups of experiments were performed on conscious SD and TGR rats that were chronically instrumented with a lateral cerebral ventricle (LCV) cannula and an intraarterial catheter. Blood pressure (MAP) and heart rate period (Hp=distance between two systolic peaks) were continuously monitored: 1) under resting conditions during an LCV infusion of either artificial cerebrospinal fluid (aCSF, 5 microl/hr) or Ang-(1-7) in aCSF (100 pmol/5 microl/hr), and 2) before and after haemorrhage performed during LCV infusion of either aCSF or Ang-(1-7) antagonist (A-779, 4 nmol/5 microl/hr). Cerebroventricular infusion of Ang-(1-7) did not affect baseline MAP in the SD rats but it caused a significant decrease in blood pressure in the TGR rats. In the control experiments, haemorrhage significantly reduced MAP in the SD and TGR rats and heart rate in the TGR rats. Cerebroventricular infusion of Ang-(1-7) antagonist eliminated posthaemorrhagic hypotension in both strains and bradycardia in the TGR rats. The results indicate that intrabrain Ang-(1-7) may contribute to posthaemorrhagic hypotension and bradycardia. Moreover, the manner in which it centrally regulates the cardiovascular functions in the SD and TGR rats may be considerably different.

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Year:  2003        PMID: 14566076

Source DB:  PubMed          Journal:  J Physiol Pharmacol        ISSN: 0867-5910            Impact factor:   3.011


  15 in total

1.  Angiotensin-converting enzyme inhibition, but not AT(1) receptor blockade, in the solitary tract nucleus improves baroreflex sensitivity in anesthetized transgenic hypertensive (mRen2)27 rats.

Authors:  Katsunori Isa; Amy C Arnold; Brian M Westwood; Mark C Chappell; Debra I Diz
Journal:  Hypertens Res       Date:  2011-09-22       Impact factor: 3.872

2.  Central ANG-(1-7) infusion improves blood pressure regulation in antenatal betamethasone-exposed sheep and reveals sex-dependent effects on oxidative stress.

Authors:  Alexa S Hendricks; Matthew J Lawson; Jorge P Figueroa; Mark C Chappell; Debra I Diz; Hossam A Shaltout
Journal:  Am J Physiol Heart Circ Physiol       Date:  2019-04-05       Impact factor: 4.733

Review 3.  The ACE2/Angiotensin-(1-7)/MAS Axis of the Renin-Angiotensin System: Focus on Angiotensin-(1-7).

Authors:  Robson Augusto Souza Santos; Walkyria Oliveira Sampaio; Andreia C Alzamora; Daisy Motta-Santos; Natalia Alenina; Michael Bader; Maria Jose Campagnole-Santos
Journal:  Physiol Rev       Date:  2018-01-01       Impact factor: 37.312

4.  In vivo expression of angiotensin-(1-7) lowers blood pressure and improves baroreflex function in transgenic (mRen2)27 rats.

Authors:  Maria A Garcia-Espinosa; Hossam A Shaltout; Patricia E Gallagher; Mark C Chappell; Debra I Diz
Journal:  J Cardiovasc Pharmacol       Date:  2012-08       Impact factor: 3.105

5.  Central angiotensin-(1-7) improves vagal function independent of blood pressure in hypertensive (mRen2)27 rats.

Authors:  Manisha Nautiyal; Hossam A Shaltout; Daniel C de Lima; Kenia do Nascimento; Mark C Chappell; Debra I Diz
Journal:  Hypertension       Date:  2012-10-08       Impact factor: 10.190

6.  Brain-selective overexpression of human Angiotensin-converting enzyme type 2 attenuates neurogenic hypertension.

Authors:  Yumei Feng; Huijing Xia; Yanhui Cai; Carmen M Halabi; Lenice K Becker; Robson A S Santos; Robert C Speth; Curt D Sigmund; Eric Lazartigues
Journal:  Circ Res       Date:  2009-11-19       Impact factor: 17.367

7.  Angiotensin-(1-7) and baroreflex function in nucleus tractus solitarii of (mRen2)27 transgenic rats.

Authors:  Debra I Diz; Maria Antonia Garcia-Espinosa; Patricia E Gallagher; Detlev Ganten; Carlos M Ferrario; David B Averill
Journal:  J Cardiovasc Pharmacol       Date:  2008-06       Impact factor: 3.105

8.  Angiotensin-(1-7) Central Mechanisms After ICV Infusion in Hypertensive Transgenic (mRen2)27 Rats.

Authors:  Lucas M Kangussu; Marcella Nunes Melo-Braga; Bruna Soares de Souza Lima; Robson A S Santos; Hélida Monteiro de Andrade; Maria José Campagnole-Santos
Journal:  Front Neurosci       Date:  2021-04-23       Impact factor: 4.677

9.  ACE2-Ang-(1-7)-Mas Axis in Brain: A Potential Target for Prevention and Treatment of Ischemic Stroke.

Authors:  Teng Jiang; Li Gao; Jie Lu; Ying-Dong Zhang
Journal:  Curr Neuropharmacol       Date:  2013-03       Impact factor: 7.363

10.  The effects of angiotensin II and angiotensin-(1-7) in the rostral ventrolateral medulla of rats on stress-induced hypertension.

Authors:  Dongshu Du; Jun Chen; Min Liu; Minxia Zhu; Haojia Jing; Jie Fang; Linlin Shen; Danian Zhu; Jerry Yu; Jin Wang
Journal:  PLoS One       Date:  2013-08-14       Impact factor: 3.240

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