Identification of Gene Expression Signatures for Phenotype-Specific Drug Targeting of Cardiac Fibrosis

Author:

Lukovic Dominika1ORCID,Hasimbegovic Ena1,Winkler Johannes1,Mester-Tonczar Julia1ORCID,Müller-Zlabinger Katrin1ORCID,Han Emilie1ORCID,Spannbauer Andreas1ORCID,Traxler-Weidenauer Denise1ORCID,Bergler-Klein Jutta1,Pavo Noemi1,Goliasch Georg1,Batkai Sandor2,Thum Thomas23ORCID,Zannad Faiez4,Gyöngyösi Mariann1ORCID

Affiliation:

1. Department of Internal Medicine II, Division of Cardiology, Medical University of Vienna, 1090 Vienna, Austria

2. Hannover Medical School Institute of Molecular and Translational Therapeutic Strategies (IMTTS), 30625 Hannover, Germany

3. Fraunhofer Institute for Toxicology and Experimental Medicine (ITEM), 30625 Hannover, Germany

4. Inserm Clinical Investigation Centre, Université de Lorraine, CHU, 54052 Nancy, France

Abstract

We have designed translational animal models to investigate cardiac profibrotic gene signatures. Domestic pigs were treated with cardiotoxic drugs (doxorubicin, DOX, n = 5 or Myocet®, MYO, n = 5) to induce replacement fibrosis via cardiotoxicity. Reactive interstitial fibrosis was triggered by LV pressure overload by artificial isthmus stenosis with stepwise developing myocardial hypertrophy and final fibrosis (Hyper, n = 3) or by LV volume overload in the adverse remodeled LV after myocardial infarction (RemoLV, n = 3). Sham interventions served as controls and healthy animals (Control, n = 3) served as a reference in sequencing study. Myocardial samples from the LV of each group were subjected to RNA sequencing. RNA-seq analysis revealed a clear distinction between the transcriptomes of myocardial fibrosis (MF) models. Cardiotoxic drugs activated the TNF-alpha and adrenergic signaling pathways. Pressure or volume overload led to the activation of FoxO pathway. Significant upregulation of pathway components enabled the identification of potential drug candidates used for the treatment of heart failure, such as ACE inhibitors, ARB, ß-blockers, statins and diuretics specific to the distinct MF models. We identified candidate drugs in the groups of channel blockers, thiostrepton that targets the FOXM1-regulated ACE conversion to ACE2, tyrosine kinases or peroxisome proliferator-activated receptor inhibitors. Our study identified different gene targets involved in the development of distinct preclinical MF protocols enabling tailoring expression signature-based approach for the treatment of MF.

Funder

European Commission FP7 Program

TEVA Ratiopharm

DFG Collaborative Research Center

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

Reference37 articles.

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3. A Review of the Molecular Mechanisms Underlying the Development and Progression of Cardiac Remodeling;Schirone;Oxid. Med. Cell. Longev.,2017

4. Heart Failure;Metra;Lancet,2017

5. Long-Term Treatment with Low-Dose, but Not High-Dose, Guanethidine Improves Ventricular Function and Survival of Rats with Heart Failure after Myocardial Infarction;Igawa;J. Am. Coll. Cardiol.,2003

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