4.5 Article

Mechanisms of action of sacubitril/valsartan on cardiac remodeling: a systems biology approach

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NATURE PORTFOLIO
DOI: 10.1038/s41540-017-0013-4

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资金

  1. Ministerio de Educacion y Ciencia [SAF2014-59892]
  2. Fundacio La MARATO de TV3 [201502, 201516]
  3. Fundacio Daniel Bravo Andreu
  4. Sociedad Espanola de Cardiologia
  5. Societat Catalana de Cardiologia
  6. Generalitat de Catalunya (SGR 2014)
  7. La Caixa Banking Foundation
  8. Red de Terapia Celular -TerCel project as part of the Plan Nacional de I+D+I [RD16/0011/0006]
  9. CIBER Cardiovascular project as part of the Plan Nacional de I+D+I [CB16/11/00403]
  10. ISCIII-Sudireccion General de Evaluacion y el Fondo Europeo de Desarrollo Regional
  11. ACCIO (Catalonia Trade Investment
  12. Generalitat de Catalunya) under the Catalonian ERDF operational program (European Regional Development Fund) 2014-2020

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Sacubitril/Valsartan, proved superiority over other conventional heart failure management treatments, but its mechanisms of action remains obscure. In this study, we sought to explore the mechanistic details for Sacubitril/Valsartan in heart failure and post-myocardial infarction remodeling, using an in silico, systems biology approach. Myocardial transcriptome obtained in response to myocardial infarction in swine was analyzed to address post-infarction ventricular remodeling. Swine transcriptome hits were mapped to their human equivalents using Reciprocal Best (blast) Hits, Gene Name Correspondence, and InParanoid database. Heart failure remodeling was studied using public data available in gene expression omnibus (accession GSE57345, subseries GSE57338), processed using the GEO2R tool. Using the Therapeutic Performance Mapping System technology, dedicated mathematical models trained to fit a set of molecular criteria, defining both pathologies and including all the information available on Sacubitril/Valsartan, were generated. All relationships incorporated into the biological network were drawn from public resources (including KEGG, REACTOME, INTACT, BIOGRID, and MINT). An artificial neural network analysis revealed that Sacubitril/Valsartan acts synergistically against cardiomyocyte cell death and left ventricular extracellular matrix remodeling via eight principal synergistic nodes. When studying each pathway independently, Valsartan was found to improve cardiac remodeling by inhibiting members of the guanine nucleotide-binding protein family, while Sacubitril attenuated cardiomyocyte cell death, hypertrophy, and impaired myocyte contractility by inhibiting PTEN. The complex molecular mechanisms of action of Sacubitril/Valsartan upon post-myocardial infarction and heart failure cardiac remodeling were delineated using a systems biology approach. Further, this dataset provides pathophysiological rationale for the use of Sacubitril/Valsartan to prevent post-infarct remodeling.

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