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Published on: August 29, 2018
Association of Long Noncoding RNA Expression Signatures with Stress-Induced Myocardial Perfusion Defects
Yu-Chieh Chang1, Jun-Ting Liou2, Yu-Min Peng3
1Division of Nuclear Medicine, China Medical University Hsinchu Hospital, Zhubei City 302, Taiwan.
Insights
A novel blood test using long noncoding RNA (lncRNA) expression can detect early signs of coronary heart disease. This discovery aids in identifying vascular homeostasis imbalance and personalizing patient therapy.
Area of Science:
- Cardiovascular Medicine
- Molecular Biology
- Genetics
Background:
- Stress-induced myocardial perfusion defects suggest coronary heart disease risk.
- Current diagnostics rely on imaging and invasive angiography; no blood test exists for early detection of vascular homeostasis imbalance.
Purpose of the Study:
- To investigate the expression signature of long noncoding RNAs (lncRNAs) and genes in patients with stress-induced myocardial perfusion abnormalities.
- To identify a blood-based biomarker for early detection of vascular homeostasis imbalance.
Main Methods:
- Analysis of lncRNA and gene expression in blood samples from 27 patients with stress-induced myocardial perfusion abnormalities.
- Development of a scoring system based on specific lncRNA and gene expression profiles.
Main Results:
- Identified an expression signature including upregulation of RMRP and downregulation of THRIL and HIF1A in patients with positive stress tests and no significant coronary stenosis.
- Developed a scoring system (AUC = 0.963) using RMRP, MIAT, NTT, MALAT1, HSPA1A, and NLRP3 to predict the need for coronary angiography (CAG).
Conclusions:
- A dysregulated lncRNA-based gene expression profile in blood can aid in early detection of vascular homeostasis imbalance.
- This finding offers potential for non-invasive diagnosis and personalized therapy in coronary heart disease management.
Abstract:
Stress-induced myocardial perfusion defects found in dipyridamole-thallium-201 single-photon emission computed tomography imaging may indicate vascular perfusion abnormalities and risk of obstructive or nonobstructive coronary heart disease. Besides nuclear imaging and subsequent coronary angiography (CAG), no blood test can indicate whether dysregulated homeostasis is associated with stress-induced myocardial perfusion defects. This study investigated the expression signature of long noncoding RNAs (lncRNAs) and genes involved in vascular inflammation and stress response in the blood of patients with stress-induced myocardial perfusion abnormalities (n = 27). The results revealed an expression signature consisting of the upregulation of RMRP (p < 0.01) and downregulations of THRIL (p < 0.01) and HIF1A (p < 0.01) among patients with a positive thallium stress test and no significant coronary artery stenosis within 6 months after baseline treatment. We developed a scoring system based on the expression signatures of RMRP, MIAT, NTT, MALAT1, HSPA1A, and NLRP3 to predict the need for further CAG among patients with moderate-to-significant stress-induced myocardial perfusion defects (area under the receiver operating characteristic curve = 0.963). Therefore, we identified a dysregulated expression profile of lncRNA-based genes in the blood that could be valuable for the early detection of vascular homeostasis imbalance and personalized therapy.
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