State-of-the-Art Paper
microRNAs in Cardiovascular Diseases: Current Knowledge and the Road Ahead

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Over the last few years, the field of microribonucleic acid (miRNA) in cardiovascular biology and disease has expanded at an incredible pace. miRNAs are themselves part of a larger family, that of non-coding RNAs, the importance of which for biological processes is starting to emerge. miRNAs are ∼22-nucleotide-long RNA sequences that can legate messenger (m)RNAs at partially complementary binding sites, and hence regulate the rate of protein synthesis by altering the stability of the targeted mRNAs. In the cardiovascular system, miRNAs have been shown to be critical regulators of development and physiology. They control basic functions in virtually all cell types relevant to the cardiovascular system (such as endothelial cells, cardiac muscle, smooth muscle, inflammatory cells, and fibroblasts) and, thus, are directly involved in the pathophysiology of many cardiovascular diseases. As a result of their role in disease, they are being studied for exploitation in diagnostics, prognostics, and therapeutics. However, there are still significant obstacles that need to be overcome before they enter the clinical arena. We present here a review of the literature and outline the directions toward their use in the clinic.

Key Words

cardiovascular disease
heart disease
microRNA

Abbreviations and Acronyms

CAM
cell adhesion molecule
cTNT
cardiac troponin T
DM
diabetes mellitus
EC
endothelial cell
HF
heart failure
MI
myocardial infarction
mRNA
messenger ribonucleic acid
miRNA/miR
microribonucleic acid
ncRNA
non-protein coding ribonucleic acid
RNA
ribonucleic acid
VSMC
vascular smooth muscle cell

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Dr. Condorelli has received funding from the European Research Council (Advanced Grant ‘CardioEpigen’ 294609), Fondation LeDucq, and Fondazione CARIPLO (12-4-5157157-31). All other authors have reported they have no relationships relevant to the contents of this paper to disclose.