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Published on: September 15, 2018
Greater preclinical atherosclerosis in treated monogenic familial hypercholesterolemia vs. polygenic
Mahtab Sharifi1, Elizabeth Higginson2, Sven Bos3
1Centre for Cardiovascular Genetics, University College London, The Rayne Institute, University Street, London, WC1E 6JF, UK; Department of Clinical Biochemistry, The Royal Free London NHS Foundation Trust, Pond Street, London, NW3 2QG, UK.
Insights
Patients with monogenic familial hypercholesterolemia (FH) show more severe preclinical atherosclerosis than those with polygenic hypercholesterolemia. This finding highlights differences in disease severity based on the genetic cause of high LDL-C.
Area of Science:
- Cardiovascular Medicine
- Genetics
- Metabolic Disorders
Background:
- Familial hypercholesterolemia (FH) is an inherited disorder affecting low-density lipoprotein-cholesterol (LDL-C) metabolism, increasing the risk of premature coronary heart disease.
- A significant portion of FH patients lack detectable gene mutations, suggesting a polygenic cause for elevated LDL-C.
- Preclinical atherosclerosis assessment is crucial for understanding disease progression in different FH etiologies.
Purpose of the Study:
- To compare the degree of preclinical atherosclerosis in patients with monogenic FH versus those with polygenic hypercholesterolemia.
- To investigate the relationship between genetic cause and atherosclerosis severity in FH patients.
Main Methods:
- Recruited patients with detected FH mutations (monogenic) and mutation-negative patients with high LDL-C and specific genetic markers (polygenic).
- Measured carotid intima-media thickness (IMT) using B-mode ultrasound.
- Assessed coronary artery calcium (CAC) scores.
Main Results:
- Monogenic FH patients exhibited significantly greater carotid IMT compared to polygenic patients (0.74 mm vs. 0.66 mm, p=0.038).
- Coronary artery calcium scores were substantially higher in monogenic FH patients than in polygenic patients (24.5 vs. 2.65, p=0.0004).
- These differences were significant after adjusting for age and gender.
Conclusions:
- Patients with monogenic FH have a more severe presentation of preclinical carotid and coronary atherosclerosis compared to those with polygenic hypercholesterolemia.
- The genetic basis of hypercholesterolemia influences the extent of early atherosclerotic disease.
Background And Aims:
Familial hypercholesterolemia (FH) is a common inherited disorder of low density lipoprotein-cholesterol (LDL-C) metabolism. It is associated with higher risk of premature coronary heart disease. Around 60% of patients with a clinical diagnosis of FH do not have a detectable mutation in the genes causing FH and are most likely to have a polygenic cause for their raised LDL-C. We assessed the degree of preclinical atherosclerosis in treated patients with monogenic FH versus polygenic hypercholesterolemia.
Methods:
FH mutation testing and genotypes of six LDL-C-associated single nucleotide polymorphisms (SNPs) were determined using routine methods. Those with a detected mutation (monogenic) and mutation-negative patients with LDL-C SNP score in the top two quartiles (polygenic) were recruited. Carotid intima media thickness (IMT) was measured by B-mode ultrasound and the coronary artery calcium (CAC) score was performed in three lipid clinics in the UK and the Netherlands.
Results:
86 patients (56 monogenic FH, 30 polygenic) with carotid IMT measurement, and 166 patients (124 monogenic, 42 polygenic) with CAC score measurement were examined. After adjustment for age and gender, the mean of all the carotid IMT measurements and CAC scores were significantly greater in the monogenic than the polygenic patients [carotid IMT mean (95% CI): 0.74 mm (0.7-0.79) vs. 0.66 mm (0.61-0.72), p = 0.038 and CAC score mean (95%): 24.5 (14.4-41.8) vs. 2.65 (0.94-7.44), p = 0.0004].
Conclusions:
In patients with a diagnosis of FH, those with a monogenic cause have a higher severity of carotid and coronary preclinical atherosclerosis than those with a polygenic aetiology.
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