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Circulating miR-33a and miR-33b are up-regulated in familial hypercholesterolaemia in paediatric age
Francesco Martino1, Fabrizio Carlomosti2, Daniele Avitabile3
1Center of Clinic Lipid Research, Department of Pediatrics, Sapienza University of Rome, Viale Regina Elena 324, 00161 Rome, Italy ale.magenta@gmail.com francesco.martino30@tin.it.
Insights
Circulating miR-33a and miR-33b levels are elevated in children with familial hypercholesterolaemia. These microRNAs show potential as early biomarkers for high cholesterol in childhood.
Area of Science:
- Cardiovascular Biology
- Molecular Biology
- Genetics
Background:
- Hypercholesterolaemia is a major risk factor for cardiovascular disease (CVD), contributing to oxidative stress, endothelial dysfunction, and atherosclerosis.
- MicroRNAs (miRNAs) play crucial roles in CVD pathogenesis and inflammation.
- miR-33a and miR-33b are implicated in cholesterol homeostasis, high-density lipoprotein (HDL)-cholesterol metabolism, fatty acid oxidation, and insulin signaling.
Purpose of the Study:
- To investigate alterations in circulating miR-33a and miR-33b expression in children with familial hypercholesterolaemia (FH).
- To explore the potential of these miRNAs as early biomarkers for cholesterol levels in pediatric populations.
Main Methods:
- Plasma total RNA was extracted from 28 hypercholesterolaemic children and 25 healthy controls.
- Quantitative real-time PCR was employed to measure miR-33a and miR-33b expression levels.
- Correlation and ordinary least squares (OLS) regression analyses were performed to assess relationships with clinical parameters.
Main Results:
- miR-33a and miR-33b were significantly upregulated in the plasma of children with FH compared to healthy controls (4.49-fold and 3.21-fold increases, respectively).
- Both miRNAs positively correlated with total cholesterol, LDL-cholesterol, LDL/HDL ratio, apolipoprotein B, C-reactive protein (CRP), and glycemia.
- OLS regression indicated that miR-33a was significantly associated with FH, glycemia, and CRP, while miR-33b was related to FH and CRP.
Conclusions:
- Circulating miR-33a and miR-33b are significantly elevated in children with familial hypercholesterolaemia.
- These miRNAs demonstrate a strong correlation with key lipid parameters and inflammatory markers.
- miR-33a and miR-33b may serve as promising early biomarkers for detecting elevated cholesterol levels in children, warranting further validation in larger cohorts.
Abstract:
Hypercholesterolaemia is one of the major causes of CVD (cardiovascular disease). It is associated with enhanced oxidative stress, leading to increased lipid peroxidation which in turn determines endothelial dysfunction and susceptibility to coronary vasoconstriction and atherosclerosis. Different miRNAs are involved in the pathogenesis of CVD and play an important role in inflammatory process control, therefore, together with atherogenic factors, they can stimulate atherosclerotic degeneration of the vessel walls of arteries. miR-33a and miR-33b play a pivotal role in a variety of biological processes including cholesterol homoeostasis, HDL (high-density lipoprotein)-cholesterol formation, fatty acid oxidation and insulin signalling. Our study aimed to determine whether circulating miR-33a and miR-33b expression was altered in familial hypercholesterolaemic children. Total RNA was extracted from plasma, and miR-33a and miR-33b were measured by quantitative real-time PCR. We found that miR-33a and miR-33b were significantly up-regulated in the plasma of 28 hypercholesterolaemic children compared with 25 healthy subjects (4.49±0.27-fold increase, P<0.001, and 3.21±0.39-fold increase, P<0.05 respectively), and for both miRNAs, a positive correlation with total cholesterol, LDL (low-density lipoprotein)-cholesterol, LDL-cholesterol/HDL-cholesterol ratio, apolipoprotein B, CRP (C-reactive protein) and glycaemia was found. OLS (ordinary least squares) regression analysis revealed that miR-33a was significantly affected by the presence of FH (familial hypercholesterolaemia), glycaemia and CRP (P<0.001, P<0.05 and P<0.05 respectively). The same analysis showed that miR-33b was significantly related to FH and CRP (P<0.05 and P<0.05 respectively). Although it is only explorative, the present study could be the first to point to the use of miR-33a and miR-33b as early biomarkers for cholesterol levels in childhood, once validated in independent larger cohorts.
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