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A deep sequencing approach to uncover the miRNOME in the human heart
S. Leptidis
, H. el Azzouzi
, S.I. Lok
, R. de Weger
, S. Olieslagers
, N. Kisters
, G.J. Silva
, S. Heymans
, E. Cuppen
, E. Berezikov
, L.J. de Windt
, P. da Costa Martins
Hubrecht Institute
Research output
:
Contribution to journal/periodical
›
Article
›
Scientific
›
peer-review
81
Citations (Scopus)
Overview
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Keyphrases
MicroRNA
100%
Deep Sequencing
100%
Sequence Method
100%
Human Heart
100%
Dilated Cardiomyopathy
22%
Hypertrophic Cardiomyopathy
22%
Pathological Process
11%
Protein-coding Genes
11%
Differential Expression
11%
Failing Heart
11%
Heart Failure
11%
Messenger RNA (mRNA)
11%
Non-coding RNA (ncRNA)
11%
Etiology
11%
3′-untranslated Region (3′-UTR)
11%
Array-based
11%
MicroRNA Expression
11%
Bioinformatics
11%
Myocardial Disease
11%
Heart Disease
11%
Base Pairing
11%
Human microRNA
11%
Primate Species
11%
Mammalian Heart
11%
Gene Regulators
11%
Human Myocardium
11%
Novel Class
11%
High-density Oligonucleotide Arrays
11%
Biochemistry, Genetics and Molecular Biology
MicroRNA
100%
Deep Sequencing
100%
Messenger RNA
9%
Non-Coding RNA
9%
Locus Control Region
9%
Bioinformatics
9%
DNA Microarray
9%
3' Untranslated Region
9%
Differential Display
9%
Base Pairing
9%
Nucleotide
9%
Pharmacology, Toxicology and Pharmaceutical Science
microRNA
100%
Hypertrophic Cardiomyopathy
18%
Congestive Heart Failure
9%
Base
9%
Oligonucleotide
9%
Myocardial Disease
9%
Untranslated RNA
9%
Messenger RNA
9%
Heart Disease
9%