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Published on: November 8, 2024
The Emerging Role of miR-223 in Platelet Reactivity: Implications in Antiplatelet Therapy
Rui Shi1, Xin Zhou1, Wen-Jie Ji1
1Tianjin Key Laboratory of Cardiovascular Remodeling and Target Organ Injury, Institute of Cardiovascular Disease and Heart Center, Pingjin Hospital, Logistics University of the Chinese People's Armed Police Forces, 220 Cheng-Lin Road, Tianjin 300162, China.
Abstract:
Platelets are anuclear cells and are devoid of genomic DNA, but they are capable of de novo protein synthesis from mRNA derived from their progenitor cells, megakaryocytes. There is mounting evidence that microRNA (miRNA) plays an important role in regulating gene expression in platelets. miR-223 is the most abundant miRNAs in megakaryocytes and platelets. One of the miR-223-regulated genes is ADP P2Y12, a key target for current antiplatelet drug therapy. Recent studies showed that a blunted response to P2Y12 antagonist, that is, high on-treatment platelet reactivity (HTPR), is a strong predictor of major cardiovascular events (MACEs) in coronary heart disease (CHD) patients receiving antiplatelet treatment. Recent clinical cohort study showed that the level of circulating miR-223 is inversely associated with MACE in CHD patients. In addition, our recent data demonstrated that the level of both intraplatelet and circulating miR-223 is an independent predictor for HTPR, thus providing a link between miR-223 and MACE. These lines of evidence indicate that miR-223 may serve as a potential regulatory target for HTPR, as well as a diagnostic tool for identification of HTPR in clinical settings.
Insights
MicroRNA-223 (miR-223) is linked to high on-treatment platelet reactivity (HTPR) and cardiovascular events in coronary heart disease patients. Lower miR-223 levels predict HTPR, suggesting its potential as a diagnostic marker.
Area of Science:
- Platelet biology
- Molecular diagnostics
- Cardiovascular research
Background:
- Platelets synthesize proteins from mRNA, with microRNAs (miRNAs) regulating gene expression.
- miR-223 is highly abundant in megakaryocytes and platelets.
- ADP P2Y12 is a key antiplatelet drug target regulated by miR-223.
Purpose of the Study:
- To investigate the role of miR-223 in high on-treatment platelet reactivity (HTPR).
- To explore miR-223 as a potential diagnostic tool for HTPR and cardiovascular events.
Main Methods:
- Analysis of circulating and intraplatelet miR-223 levels.
- Correlation studies with high on-treatment platelet reactivity (HTPR) and major cardiovascular events (MACEs).
Main Results:
- Circulating miR-223 levels are inversely associated with MACE in coronary heart disease (CHD) patients.
- Intraplatelet and circulating miR-223 levels independently predict HTPR.
- miR-223 links HTPR and MACE in CHD patients.
Conclusions:
- miR-223 is a potential biomarker for predicting HTPR and MACE in CHD patients.
- miR-223 may serve as a therapeutic target to improve antiplatelet treatment efficacy.
- miR-223 has potential as a diagnostic tool for identifying patients at risk of HTPR.
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