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Digital PCR for Quantifying Circulating MicroRNAs in Acute Myocardial Infarction and Cardiovascular Disease
Published on: July 3, 2018
Insights Into Platelet-Derived MicroRNAs in Cardiovascular and Oncologic Diseases: Potential Predictor and
Qianru Leng1, Jie Ding1, Meiyan Dai1
1Division of Cardiology, Hubei Key Laboratory of Genetics and Molecular Mechanisms of Cardiological Disorders, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Abstract:
Non-communicable diseases (NCDs), represented by cardiovascular diseases and cancer, have been the leading cause of death globally. Improvements in mortality from cardiovascular (CV) diseases (decrease of 14%/100,000, United States) or cancers (increase 7.5%/100,000, United States) seem unsatisfactory during the past two decades, and so the search for innovative and accurate biomarkers of early diagnosis and prevention, and novel treatment strategies is a valuable clinical and economic endeavor. Both tumors and cardiovascular system are rich in angiological systems that maintain material exchange, signal transduction and distant regulation. This pattern determines that they are strongly influenced by circulating substances, such as glycolipid metabolism, inflammatory homeostasis and cyclic non-coding RNA and so forth. Platelets, a group of small anucleated cells, inherit many mature proteins, mRNAs, and non-coding RNAs from their parent megakaryocytes during gradual formation and manifest important roles in inflammation, angiogenesis, atherosclerosis, stroke, myocardial infarction, diabetes, cancer, and many other diseases apart from its classical function in hemostasis. MicroRNAs (miRNAs) are a class of non-coding RNAs containing ∼22 nucleotides that participate in many key cellular processes by pairing with mRNAs at partially complementary binding sites for post-transcriptional regulation of gene expression. Platelets contain fully functional miRNA processors in their microvesicles and are able to transport their miRNAs to neighboring cells and regulate their gene expression. Therefore, the importance of platelet-derived miRNAs for the human health is of increasing interest. Here, we will elaborate systematically the roles of platelet-derived miRNAs in cardiovascular disease and cancer in the hope of providing clinicians with new ideas for early diagnosis and therapeutic strategies.
Insights
Platelet-derived microRNAs (miRNAs) are emerging biomarkers for non-communicable diseases (NCDs) like cardiovascular disease and cancer. Understanding their roles offers new avenues for early diagnosis and treatment strategies.
Area of Science:
- Biomedical Science
- Molecular Biology
- Cardiovascular Research
Background:
- Non-communicable diseases (NCDs), including cardiovascular diseases and cancer, are leading global causes of mortality.
- Current mortality improvements for cardiovascular diseases and cancers are unsatisfactory, necessitating novel diagnostic and therapeutic approaches.
- The angiological systems in tumors and the cardiovascular system are influenced by circulating substances, highlighting the need for advanced biomarker research.
Purpose of the Study:
- To systematically review the roles of platelet-derived microRNAs (miRNAs) in cardiovascular disease (CVD) and cancer.
- To explore the potential of platelet-derived miRNAs as biomarkers for early diagnosis and prevention of NCDs.
- To identify novel therapeutic strategies based on platelet-derived miRNAs for CVD and cancer.
Main Methods:
- Literature review and systematic analysis of existing research on platelet-derived miRNAs.
- Examination of the molecular mechanisms underlying miRNA transport and function in platelets.
- Correlation analysis of miRNA expression profiles with disease states in cardiovascular and cancer research.
Main Results:
- Platelets contain and transport functional miRNAs, influencing gene expression in recipient cells.
- Platelet-derived miRNAs play significant roles in inflammation, angiogenesis, atherosclerosis, and cancer progression.
- Evidence suggests specific miRNAs derived from platelets can serve as potential biomarkers for CVD and cancer.
Conclusions:
- Platelet-derived miRNAs represent a promising area for developing innovative diagnostic and therapeutic strategies for NCDs.
- Further research into platelet miRNA biology can unlock new clinical applications for managing cardiovascular diseases and cancer.
- Targeting platelet-derived miRNAs may offer novel treatment avenues for improving patient outcomes in NCDs.

