Literature DB >> 21116240

Myocardial fibrosis in response to Angiotensin II is preceded by the recruitment of mesenchymal progenitor cells.

Mryanda J Sopel1, Nicole L Rosin, Timothy D G Lee, Jean-Francois Légaré.   

Abstract

Myocardial fibrosis is characterized by significant extracellular matrix (ECM) deposition. The specific cellular mediators that contribute to the development of fibrosis are not well understood. Using a model of fibrosis with Angiotensin II (AngII) infusion, our aim was to characterize the cellular elements involved in the development of myocardial fibrosis. Male C57Bl/6 and Tie2-GFP mice were given AngII (2.0 mg/kg/min) or saline (control) via mini osmotic pumps for up to 7 days. Hearts were harvested, weighed and processed for analysis. Cellular infiltration and collagen deposition were quantified. Immunostaining was performed for specific markers of leukocytes (CD45, CD11b), myofibroblasts (SMA), endothelial cells (vWF) and hematopoietic progenitor cells (CD133). Bone marrow (BM) origin of infiltrating cells was assessed using GFP(+) chimeric animals. Relative qRT-PCR was performed for pro-fibrotic cytokines (transforming growth factor (TGF)-β1, CTGF) as well as the chemokine stromal-derived factor (SDF)-1α. Myocardial-infiltrating cells were grown in vitro. AngII exposure resulted in multifocal myocardial cellular infiltration, which preceded extensive ECM deposition. A limited number of myocardial-infiltrating cells were positive for leukocyte markers but were significantly positive for myofibroblast (SMA) and endothelial cell (vWF) markers. However, using Tie2-GFP mice, where endothelial cells are GFP(+), myocardial-infiltrating cells were not GFP(+). Transcript levels for SDF-1α were significantly elevated at 1 day of AngII exposure suggesting that hematopoietic progenitor cells may be recruited. This was confirmed by positive CD133 staining of infiltrating cells and evident GFP(+) cellular infiltration when exposing GFP(+) BM chimeras to AngII. Furthermore, a significant number of CD133(+)/SMA(+) cells were grown in vitro from the myocardium of AngII-exposed animals (P<0.01). Myocardial ECM deposition is preceded by the infiltration of the myocardium with hematopoietic cells that express mesenchymal markers. These data suggest that mesenchymal progenitor cells are recruited, and may have a primary role, in the initiation of myocardial fibrosis.

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Year:  2010        PMID: 21116240     DOI: 10.1038/labinvest.2010.190

Source DB:  PubMed          Journal:  Lab Invest        ISSN: 0023-6837            Impact factor:   5.662


  27 in total

1.  Interleukin-10 Inhibits Bone Marrow Fibroblast Progenitor Cell-Mediated Cardiac Fibrosis in Pressure-Overloaded Myocardium.

Authors:  Suresh K Verma; Venkata N S Garikipati; Prasanna Krishnamurthy; Sarah M Schumacher; Laurel A Grisanti; Maria Cimini; Zhongjian Cheng; Mohsin Khan; Yujia Yue; Cindy Benedict; May M Truongcao; Joseph E Rabinowitz; David A Goukassian; Douglas Tilley; Walter J Koch; Raj Kishore
Journal:  Circulation       Date:  2017-06-30       Impact factor: 29.690

2.  Identification of a cell-of-origin for fibroblasts comprising the fibrotic reticulum in idiopathic pulmonary fibrosis.

Authors:  Hong Xia; Vidya Bodempudi; Alexey Benyumov; Polla Hergert; Damien Tank; Jeremy Herrera; Jeff Braziunas; Ola Larsson; Matthew Parker; Daniel Rossi; Karen Smith; Mark Peterson; Andrew Limper; Jose Jessurun; John Connett; David Ingbar; Sem Phan; Peter B Bitterman; Craig A Henke
Journal:  Am J Pathol       Date:  2014-03-13       Impact factor: 4.307

3.  Collagen receptor cross-talk determines α-smooth muscle actin-dependent collagen gene expression in angiotensin II-stimulated cardiac fibroblasts.

Authors:  Harikrishnan V; Allen Sam Titus; Randy T Cowling; Shivakumar Kailasam
Journal:  J Biol Chem       Date:  2019-11-07       Impact factor: 5.157

Review 4.  Angiotensin II Signal Transduction: An Update on Mechanisms of Physiology and Pathophysiology.

Authors:  Steven J Forrester; George W Booz; Curt D Sigmund; Thomas M Coffman; Tatsuo Kawai; Victor Rizzo; Rosario Scalia; Satoru Eguchi
Journal:  Physiol Rev       Date:  2018-07-01       Impact factor: 37.312

5.  Fibroblast progenitor cells are recruited into the myocardium prior to the development of myocardial fibrosis.

Authors:  Mryanda Sopel; Alec Falkenham; Adam Oxner; Irene Ma; Timothy D G Lee; Jean-Francois Légaré
Journal:  Int J Exp Pathol       Date:  2012-01-07       Impact factor: 1.925

6.  Renal denervation in male rats with heart failure improves ventricular sympathetic nerve innervation and function.

Authors:  Maximilian I Pinkham; Michael T Loftus; Satya Amirapu; Sarah-Jane Guild; Gina Quill; William R Woodward; Beth A Habecker; Carolyn J Barrett
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2017-01-04       Impact factor: 3.619

7.  Statins impair survival of primary human mesenchymal progenitor cells via mevalonate depletion, NF-κB signaling, and Bnip3.

Authors:  Yun Li; Alison L Müller; Melanie A Ngo; Kiranjit Sran; Daniel Bellan; Rakesh C Arora; Lorrie A Kirshenbaum; Darren H Freed
Journal:  J Cardiovasc Transl Res       Date:  2014-12-30       Impact factor: 4.132

Review 8.  Regeneration in heart disease-Is ECM the key?

Authors:  Ahmad F Bayomy; Michael Bauer; Yiling Qiu; Ronglih Liao
Journal:  Life Sci       Date:  2012-09-12       Impact factor: 5.037

9.  Differential Regulatory Role of Soluble Klothos on Cardiac Fibrogenesis in Hypertension.

Authors:  Xue Liu; Yuanjian Chen; Cody W McCoy; Tieqiang Zhao; Darryl L Quarles; Min Pi; Syamal K Bhattacharya; Gwendalyn King; Yao Sun
Journal:  Am J Hypertens       Date:  2016-08-19       Impact factor: 2.689

10.  Human mesenchymal stem cells express a myofibroblastic phenotype in vitro: comparison to human cardiac myofibroblasts.

Authors:  Melanie A Ngo; Alison Müller; Yun Li; Shannon Neumann; Ganghong Tian; Ian M C Dixon; Rakesh C Arora; Darren H Freed
Journal:  Mol Cell Biochem       Date:  2014-04-02       Impact factor: 3.396

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