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Published on: June 15, 2018
Mitochondrial miRNA as epigenomic signatures: Visualizing aging-associated heart diseases through a new lens
Jasvinder Singh Bhatti1, Naina Khullar2, Rajesh Vijayvergiya3
1Laboratory of Translational Medicine and Nanotherapeutics, Department of Human Genetics and Molecular Medicine, School of Health Sciences, Central University of Punjab, Bathinda, India.
Insights
Aging hearts face increased cardiovascular disease (CVD) risks due to mitochondrial dysfunction. This review explores mitochondrial microRNAs (miRNAs) and DNA methylation as potential biomarkers for early CVD diagnosis and treatment.
Area of Science:
- Cardiovascular Science
- Mitochondrial Biology
- Epigenetics
Background:
- Cardiovascular diseases (CVDs) are a leading cause of mortality, exacerbated by aging and lifestyle factors.
- Mitochondrial dysfunction is a critical factor in the pathophysiology of cardiac aging and disease.
- Current diagnostic and treatment strategies for age-related heart conditions lack predictive and preventative capabilities.
Approach:
- This review synthesizes current research on the role of mitochondrial microRNAs (miRNAs) in cardiac ailments.
- It examines the potential of miRNAs as biomarkers for understanding complex heart disease pathways.
- The article also explores DNA methylation patterns as age-driven biomarkers in heart disease.
Key Points:
- Mitochondrial abnormalities significantly impact heart function, especially in aging.
- Mitochondrial miRNAs are implicated in the intricate mechanisms of heart disease.
- Epigenetic modifications, such as DNA methylation, offer potential for identifying age-related cardiac biomarkers.
Conclusions:
- Mitochondrial miRNAs represent a promising avenue for novel diagnostic and therapeutic strategies in cardiovascular medicine.
- Analyzing DNA methylation patterns may reveal crucial age-associated biomarkers for heart disease.
- Further research into mitochondrial epigenomics is essential for advancing cardiac care in aging populations.
Abstract:
Aging bears many hard knocks, but heart disorders earn a particular allusion, being the most widespread. Cardiovascular diseases (CVDs) are becoming the biggest concern to mankind due to sundry health conditions directly or indirectly related to heart-linked abnormalities. Scientists know that mitochondria play a critical role in the pathophysiology of cardiac diseases. Both environment and genetics play an essential role in modulating and controlling mitochondrial functions. Even a minor abnormality may prove detrimental to heart function. Advanced age combined with an unhealthy lifestyle can cause most cardiomyocytes to be replaced by fibrotic tissue which upsets the conducting system and leads to arrhythmias. An aging heart encounters far more heart-associated comorbidities than a young heart. Many state-of-the-art technologies and procedures are already being used to prevent and treat heart attacks worldwide. However, it remains a mystery when this heart bomb would explode because it lacks an alarm. This calls for a novel and effective strategy for timely diagnosis and a sure-fire treatment. This review article provides a comprehensive overture of prospective potentials of mitochondrial miRNAs that predict complicated and interconnected pathways concerning heart ailments and signature compilations of relevant miRNAs as biomarkers to plot the role of miRNAs in epigenomics. This article suggests that analysis of DNA methylation patterns in age-associated heart diseases may determine age-impelled biomarkers of heart disease.
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