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Integrative Bioinformatic Analyses of Global Transcriptome Data Decipher Novel Molecular Insights into Cardiac Anti-Fibrotic Therapies

Integrative bioinformatics is an emerging field in the big data era, offering a steadily increasing number of algorithms and analysis tools. However, for researchers in experimental life sciences it is often difficult to follow and properly apply the bioinformatical methods in order to unravel the c...

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Autores principales: Fuchs, Maximilian, Kreutzer, Fabian Philipp, Kapsner, Lorenz A., Mitzka, Saskia, Just, Annette, Perbellini, Filippo, Terracciano, Cesare M., Xiao, Ke, Geffers, Robert, Bogdan, Christian, Prokosch, Hans-Ulrich, Fiedler, Jan, Thum, Thomas, Kunz, Meik
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7370212/
https://www.ncbi.nlm.nih.gov/pubmed/32630753
http://dx.doi.org/10.3390/ijms21134727
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author Fuchs, Maximilian
Kreutzer, Fabian Philipp
Kapsner, Lorenz A.
Mitzka, Saskia
Just, Annette
Perbellini, Filippo
Terracciano, Cesare M.
Xiao, Ke
Geffers, Robert
Bogdan, Christian
Prokosch, Hans-Ulrich
Fiedler, Jan
Thum, Thomas
Kunz, Meik
author_facet Fuchs, Maximilian
Kreutzer, Fabian Philipp
Kapsner, Lorenz A.
Mitzka, Saskia
Just, Annette
Perbellini, Filippo
Terracciano, Cesare M.
Xiao, Ke
Geffers, Robert
Bogdan, Christian
Prokosch, Hans-Ulrich
Fiedler, Jan
Thum, Thomas
Kunz, Meik
author_sort Fuchs, Maximilian
collection PubMed
description Integrative bioinformatics is an emerging field in the big data era, offering a steadily increasing number of algorithms and analysis tools. However, for researchers in experimental life sciences it is often difficult to follow and properly apply the bioinformatical methods in order to unravel the complexity and systemic effects of omics data. Here, we present an integrative bioinformatics pipeline to decipher crucial biological insights from global transcriptome profiling data to validate innovative therapeutics. It is available as a web application for an interactive and simplified analysis without the need for programming skills or deep bioinformatics background. The approach was applied to an ex vivo cardiac model treated with natural anti-fibrotic compounds and we obtained new mechanistic insights into their anti-fibrotic action and molecular interplay with miRNAs in cardiac fibrosis. Several gene pathways associated with proliferation, extracellular matrix processes and wound healing were altered, and we could identify micro (mi) RNA-21-5p and miRNA-223-3p as key molecular components related to the anti-fibrotic treatment. Importantly, our pipeline is not restricted to a specific cell type or disease and can be broadly applied to better understand the unprecedented level of complexity in big data research.
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spelling pubmed-73702122020-07-21 Integrative Bioinformatic Analyses of Global Transcriptome Data Decipher Novel Molecular Insights into Cardiac Anti-Fibrotic Therapies Fuchs, Maximilian Kreutzer, Fabian Philipp Kapsner, Lorenz A. Mitzka, Saskia Just, Annette Perbellini, Filippo Terracciano, Cesare M. Xiao, Ke Geffers, Robert Bogdan, Christian Prokosch, Hans-Ulrich Fiedler, Jan Thum, Thomas Kunz, Meik Int J Mol Sci Article Integrative bioinformatics is an emerging field in the big data era, offering a steadily increasing number of algorithms and analysis tools. However, for researchers in experimental life sciences it is often difficult to follow and properly apply the bioinformatical methods in order to unravel the complexity and systemic effects of omics data. Here, we present an integrative bioinformatics pipeline to decipher crucial biological insights from global transcriptome profiling data to validate innovative therapeutics. It is available as a web application for an interactive and simplified analysis without the need for programming skills or deep bioinformatics background. The approach was applied to an ex vivo cardiac model treated with natural anti-fibrotic compounds and we obtained new mechanistic insights into their anti-fibrotic action and molecular interplay with miRNAs in cardiac fibrosis. Several gene pathways associated with proliferation, extracellular matrix processes and wound healing were altered, and we could identify micro (mi) RNA-21-5p and miRNA-223-3p as key molecular components related to the anti-fibrotic treatment. Importantly, our pipeline is not restricted to a specific cell type or disease and can be broadly applied to better understand the unprecedented level of complexity in big data research. MDPI 2020-07-02 /pmc/articles/PMC7370212/ /pubmed/32630753 http://dx.doi.org/10.3390/ijms21134727 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fuchs, Maximilian
Kreutzer, Fabian Philipp
Kapsner, Lorenz A.
Mitzka, Saskia
Just, Annette
Perbellini, Filippo
Terracciano, Cesare M.
Xiao, Ke
Geffers, Robert
Bogdan, Christian
Prokosch, Hans-Ulrich
Fiedler, Jan
Thum, Thomas
Kunz, Meik
Integrative Bioinformatic Analyses of Global Transcriptome Data Decipher Novel Molecular Insights into Cardiac Anti-Fibrotic Therapies
title Integrative Bioinformatic Analyses of Global Transcriptome Data Decipher Novel Molecular Insights into Cardiac Anti-Fibrotic Therapies
title_full Integrative Bioinformatic Analyses of Global Transcriptome Data Decipher Novel Molecular Insights into Cardiac Anti-Fibrotic Therapies
title_fullStr Integrative Bioinformatic Analyses of Global Transcriptome Data Decipher Novel Molecular Insights into Cardiac Anti-Fibrotic Therapies
title_full_unstemmed Integrative Bioinformatic Analyses of Global Transcriptome Data Decipher Novel Molecular Insights into Cardiac Anti-Fibrotic Therapies
title_short Integrative Bioinformatic Analyses of Global Transcriptome Data Decipher Novel Molecular Insights into Cardiac Anti-Fibrotic Therapies
title_sort integrative bioinformatic analyses of global transcriptome data decipher novel molecular insights into cardiac anti-fibrotic therapies
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7370212/
https://www.ncbi.nlm.nih.gov/pubmed/32630753
http://dx.doi.org/10.3390/ijms21134727
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