Abstract
MicroRNAs (miRNAs) are non-coding single-stranded RNAs with about 21˜ 23 nucleotides in length, which originate from encoding genes in nucleus. In most cases miRNAs play an inhibitory role in gene expression in a posttranscriptional level by partially complementary binding to the 3 unstranlated region (UTR) of target mRNAs. Large bodies of evidence have shown that miRNAs were involved in various diseases, such as cancer, infectious diseases, diabetes etc, and rising as critical modulators of pathological processes. Lately, some highlight articles revealed that the altered expression of miRNAs such as miR-1, miR-133, miR-21, miR-208 etc in hearts also contributed to cardiovascular diseases, such as heart ischemia, cardiac hypertrophy, and arrhythmias. Moreover, miRNAs are also identified to regulate heart development. These exciting findings not only improve our understanding of the molecular mechanisms of heart diseases, but also provide a new class of potential molecular targets— miRNAs, for the development of novel agents to treat heart diseases. Here, we summarized the recent discoveries about the role of miRNAs in cardiac physiological and pathological functions, and then discussed about their therapeutic potentials for heart diseases.
Keywords: microRNAs, development, arrhythmias, hypertrophy, ischemia
Current Medicinal Chemistry
Title: The Roles of MicroRNAs in Heart Diseases: A Novel Important Regulator
Volume: 17 Issue: 5
Author(s): B. Z. Cai, Z. W. Pan and Y. J. Lu
Affiliation:
Keywords: microRNAs, development, arrhythmias, hypertrophy, ischemia
Abstract: MicroRNAs (miRNAs) are non-coding single-stranded RNAs with about 21˜ 23 nucleotides in length, which originate from encoding genes in nucleus. In most cases miRNAs play an inhibitory role in gene expression in a posttranscriptional level by partially complementary binding to the 3 unstranlated region (UTR) of target mRNAs. Large bodies of evidence have shown that miRNAs were involved in various diseases, such as cancer, infectious diseases, diabetes etc, and rising as critical modulators of pathological processes. Lately, some highlight articles revealed that the altered expression of miRNAs such as miR-1, miR-133, miR-21, miR-208 etc in hearts also contributed to cardiovascular diseases, such as heart ischemia, cardiac hypertrophy, and arrhythmias. Moreover, miRNAs are also identified to regulate heart development. These exciting findings not only improve our understanding of the molecular mechanisms of heart diseases, but also provide a new class of potential molecular targets— miRNAs, for the development of novel agents to treat heart diseases. Here, we summarized the recent discoveries about the role of miRNAs in cardiac physiological and pathological functions, and then discussed about their therapeutic potentials for heart diseases.
Export Options
About this article
Cite this article as:
Cai Z. B., Pan W. Z. and Lu J. Y., The Roles of MicroRNAs in Heart Diseases: A Novel Important Regulator, Current Medicinal Chemistry 2010; 17 (5) . https://dx.doi.org/10.2174/092986710790226129
DOI https://dx.doi.org/10.2174/092986710790226129 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
New Chemotherapeutic Strategies Against Malaria, Leishmaniasis and Trypanosomiases
Current Medicinal Chemistry Gender Differences in the Treatment of Ischemic Heart Disease
Current Pharmaceutical Design Understanding the Role of Aldose Reductase in Ocular Inflammation
Current Molecular Medicine Sex Differences in Biomarkers for Predicting Cardiovascular and Coronary Events
Current Vascular Pharmacology Oxidative-Nitrosative Stress as a Contributing Factor to Cardiovascular Disease in Subjects with Diabetes
Current Vascular Pharmacology Ghetto Poverty and Pollution in Egypt: A Deadly Threat for Western Countries Caused by New and Infectious Mutants. A Cultural, Social and Microbiological Synopsis
Inflammation & Allergy - Drug Targets (Discontinued) Supraventricular Tachycardia in Fetus: How Can We Treat ?
Current Pharmaceutical Design Editorial [Hot topic: Polyunsaturated Fatty Acids and Human Health: A Critical Appraisal of the Evidence (Executive Editor: Antonio Cherubini)]
Current Pharmaceutical Design Oxidative Stress and Antioxidative Enzyme Activities in Chronic Kidney Disease and Different Types of Renal Replacement Therapy
Current Protein & Peptide Science Human Heart Failure: A Proteomics Perspective
Current Proteomics Therapeutic Potential of High Mobility Group Box-1 in Ischemic Injury and Tissue Regeneration
Current Vascular Pharmacology A Case-Control Study Investigating the Effect of MTHFR C677T Variant on Performance of Elite Athletes
Endocrine, Metabolic & Immune Disorders - Drug Targets Child Abuse and Neglect and its Psycho-Physical and Social Consequences: A Review of the Literature
Current Pediatric Reviews Anti-Seizure Medications and Estradiol for Neuroprotection in Epilepsy: The 2013 Update
Recent Patents on CNS Drug Discovery (Discontinued) Aquaporin-1 and Sodium-Hydrogen Exchangers as Pharmacological Targets in Diabetic Atherosclerosis
Current Drug Targets Production and Purification of Functional Lipids Through Enzymatic and Microorganism-Mediated Processes
Current Organic Chemistry Policies to Prevent Tobacco Use and Exposure in Children, a Global Perspective
Current Pediatric Reviews Molecular Effects Elicited In Vitro by Red Wine on Human Healthy Peripheral Blood Mononuclear Cells: Potential Therapeutical Application of Polyphenols to Diet-Related Chronic Diseases
Current Pharmaceutical Design Mechanical Circulatory Support of the Critically Ill Child Awaiting Heart Transplantation
Current Cardiology Reviews ErbB4 and its Isoforms: Patentable Drug Targets?
Recent Patents on DNA & Gene Sequences