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MicroRNAs in cardiomyocyte developmentThe knockout of miR-143 and -145 alters smooth muscle cell maintenance and vascular homeostasis in mice: correlates with human diseaseThe Role of p38 MAPK in the Development of Diabetic CardiomyopathyMicroRNA and Heart FailureEpigenetic associations in relation to cardiovascular prevention and therapeuticsMicroRNA-143/-145 in Cardiovascular DiseasesThe emerging role of epigenetics in cardiovascular diseaseClinical usefulness of novel serum and imaging biomarkers in risk stratification of patients with stable anginaEpigenetics: a new mechanism of regulation of heart failure?MicroRNA-34a regulates cardiac fibrosis after myocardial infarction by targeting Smad4A cardiac microRNA governs systemic energy homeostasis by regulation of MED13AutomiG, a biosensor to detect alterations in miRNA biogenesis and in small RNA silencing guided by perfect target complementaritymiR-145 inhibits isoproterenol-induced cardiomyocyte hypertrophy by targeting the expression and localization of GATA6Regulation of cardiac microRNAs by serum response factorOverexpression of microRNA-1 promotes cardiomyocyte commitment from human cardiovascular progenitors via suppressing WNT and FGF signaling pathwaysmiR-761 regulates the mitochondrial network by targeting mitochondrial fission factor.Small RNA-mediated regulation of iPS cell generation.Next-generation sequencing: from understanding biology to personalized medicine.New miRNA labeling method for bead-based quantification.Common microRNA signatures in cardiac hypertrophic and atrophic remodeling induced by changes in hemodynamic load.MicroRNAs expression profiles in cardiovascular diseases.The unique expression and function of miR-424 in human placental trophoblasts.MicroRNA expression analysis: clinical advantage of propranolol reveals key microRNAs in myocardial infarction.MicroRNA expression and function in cardiac ischemic injuryRNA-ligase-dependent biases in miRNA representation in deep-sequenced small RNA cDNA libraries.Using microRNAs to enhance the generation of induced pluripotent stem cells.miR-21 mediates fibrogenic activation of pulmonary fibroblasts and lung fibrosisMicroRNA-10a regulation of proinflammatory phenotype in athero-susceptible endothelium in vivo and in vitro.MicroRNA regulatory networks in cardiovascular developmentMicroRNA assassins: factors that regulate the disappearance of miRNAs.Unraveling the global microRNAome responses to ionizing radiation in human embryonic stem cells.MicroRNAs and the regulation of fibrosis.Expression of microRNA-184 in keratinocytes represses argonaute 2.The expression of myogenic microRNAs indirectly requires protein arginine methyltransferase (Prmt)5 but directly requires Prmt4.Role for miR-204 in human pulmonary arterial hypertensionOverexpression of microRNA-1 causes atrioventricular block in rodents.The Role of MicroRNAs in Regulatory T Cells and in the Immune Response.Pervasive roles of microRNAs in cardiovascular biology.Analysis of microRNA expression and function.MicroRNAs 29 are involved in the improvement of ventricular compliance promoted by aerobic exercise training in rats
P2860
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P2860
description
article científic
@ca
article scientifique
@fr
articolo scientifico
@it
artigo científico
@pt
bilimsel makale
@tr
scientific article published on June 2009
@en
vedecký článok
@sk
vetenskaplig artikel
@sv
videnskabelig artikel
@da
vědecký článek
@cs
name
MicroRNAs and cardiac pathology.
@en
MicroRNAs and cardiac pathology.
@nl
type
label
MicroRNAs and cardiac pathology.
@en
MicroRNAs and cardiac pathology.
@nl
prefLabel
MicroRNAs and cardiac pathology.
@en
MicroRNAs and cardiac pathology.
@nl
P356
P1476
MicroRNAs and cardiac pathology.
@en
P2093
Gianluigi Condorelli
Michael V G Latronico
P304
P356
10.1038/NRCARDIO.2009.56
P407
P577
2009-06-01T00:00:00Z