Literature DB >> 20103774

Circulating rather than cardiac angiotensin-(1-7) stimulates cardioprotection after myocardial infarction.

Yong Wang1, Cheng Qian, Anton J M Roks, Dirk Westermann, Sarah-Mai Schumacher, Felicitas Escher, Regien G Schoemaker, Timothy L Reudelhuber, Wiek H van Gilst, Heinz-Peter Schultheiss, Carsten Tschöpe, Thomas Walther.   

Abstract

BACKGROUND: Angiotensin (Ang)-(1-7) attenuates the development of heart failure. In addition to its local effects on cardiovascular tissue, Ang-(1-7) also stimulates bone marrow, which harbors cells that might complement the therapeutic effect of Ang-(1-7). We studied the effects of Ang-(1-7) either produced locally in the heart or subcutaneously injected during the development of heart failure induced by myocardial infarction (MI) and explored the role of cardiovascular progenitor cells in promoting the effects of this heptapeptide. METHODS AND
RESULTS: Effects of Ang-(1-7) on bone marrow-derived mononuclear cells in rodents, particularly endothelial progenitor cells, were investigated in vitro and in vivo in rats, in mice deficient for the putative Ang-(1-7) receptor Mas, and in mice overexpressing Ang-(1-7) exclusively in the heart. Three weeks after MI induction through permanent coronary artery occlusion, effects of Ang-(1-7) either produced locally in the heart or injected into the subcutaneous space were investigated. Ang-(1-7) stimulated proliferation of endothelial progenitor cells isolated from sham or infarcted rodents. The stimulation was blunted by A779, a Mas receptor blocker, or by Mas deficiency. Infusion of Ang-(1-7) after MI increased the number of c-kit- and vascular endothelial growth factor-positive cells in infarcted hearts, inhibited cardiac hypertrophy, and improved cardiac function 3 weeks after MI, whereas cardiomyocyte-derived Ang-(1-7) had no effect.
CONCLUSIONS: Our data suggest circulating rather than cardiac Ang-(1-7) to be beneficial after MI. This beneficial effect correlates with a stimulation of cardiac progenitor cells in vitro and in vivo. This characterizes the heptapeptide as a promising new tool in stimulating cardiovascular regeneration under pathophysiological conditions.

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Year:  2010        PMID: 20103774     DOI: 10.1161/CIRCHEARTFAILURE.109.905968

Source DB:  PubMed          Journal:  Circ Heart Fail        ISSN: 1941-3289            Impact factor:   8.790


  42 in total

Review 1.  Role of ACE2 in diastolic and systolic heart failure.

Authors:  Wang Wang; Sreedhar Bodiga; Subhash K Das; Jennifer Lo; Vaibhav Patel; Gavin Y Oudit
Journal:  Heart Fail Rev       Date:  2012-09       Impact factor: 4.214

2.  Identification of intracellular proteins and signaling pathways in human endothelial cells regulated by angiotensin-(1-7).

Authors:  Christian Meinert; Florian Gembardt; Ilka Böhme; Anja Tetzner; Thomas Wieland; Barry Greenberg; Thomas Walther
Journal:  J Proteomics       Date:  2015-09-24       Impact factor: 4.044

3.  Diminazene aceturate enhances angiotensin-converting enzyme 2 activity and attenuates ischemia-induced cardiac pathophysiology.

Authors:  Yanfei Qi; Juan Zhang; Colleen T Cole-Jeffrey; Vinayak Shenoy; Andrew Espejo; Mina Hanna; Chunjuan Song; Carl J Pepine; Michael J Katovich; Mohan K Raizada
Journal:  Hypertension       Date:  2013-08-19       Impact factor: 10.190

Review 4.  ACE2: more of Ang-(1-7) or less Ang II?

Authors:  Carlos M Ferrario
Journal:  Curr Opin Nephrol Hypertens       Date:  2011-01       Impact factor: 2.894

5.  Angiotensin-(1-7) reverses angiogenic dysfunction in corpus cavernosum by acting on the microvasculature and bone marrow-derived cells in diabetes.

Authors:  Neha Singh; Goutham Vasam; Rahul Pawar; Yagna P R Jarajapu
Journal:  J Sex Med       Date:  2014-06-23       Impact factor: 3.802

6.  Angiotensin (1-7) induces MAS receptor internalization.

Authors:  Mariela M Gironacci; Hugo P Adamo; Gerardo Corradi; Robson A Santos; Pablo Ortiz; Oscar A Carretero
Journal:  Hypertension       Date:  2011-06-13       Impact factor: 10.190

7.  Calcimimetic R568 improved cardiac remodeling by classic and novel renin-angiotensin system in spontaneously hypertensive rats.

Authors:  Tian Zhang; Na Tang; Dongmei Xi; Yongli Zhao; Yongmin Liu; Lamei Wang; Yan Tang; Xiaoni Zhang; Hua Zhong; Fang He
Journal:  Exp Biol Med (Maywood)       Date:  2019-06-03

8.  Angiotensin II and oxidative stress in the failing heart.

Authors:  Daniela Zablocki; Junichi Sadoshima
Journal:  Antioxid Redox Signal       Date:  2012-05-03       Impact factor: 8.401

9.  Angiotensin-(1-7) administration reduces oxidative stress in diabetic bone marrow.

Authors:  N M Mordwinkin; C J Meeks; S S Jadhav; T Espinoza; N Roda; G S diZerega; S G Louie; K E Rodgers
Journal:  Endocrinology       Date:  2012-03-20       Impact factor: 4.736

10.  Angiotensin-(1-7) and the Regulation of Anti-Fibrotic Signaling Pathways.

Authors:  Mark C Chappell; Ebaa M Al Zayadneh
Journal:  J Cell Signal       Date:  2017-01-27
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