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Published on: August 8, 2022
Non-familial cardiomyopathies in Lebanon: exome sequencing results for five idiopathic cases
Marwan M Refaat1,2, Sylvana Hassanieh3, Jad A Ballout4
1Department of Internal Medicine, Cardiology Division, American University of Beirut Faculty of Medicine and Medical Center (AUBMC), Phase I, 8th floor, Room C-823, PO Box 11-0236, Riad El-Solh, Beirut, 1107 2020, Lebanon. mr48@aub.edu.lb.
Insights
This study identified novel gene mutations causing cardiomyopathies in Lebanon, including a new variation in the NPR1 gene linked to hypertrophic cardiomyopathy. Further genetic profiling of more patients is needed for clinical management.
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Genetic Epidemiology
Background:
- Cardiomyopathies affect over 0.5% of the population, posing a significant risk of sudden cardiac death due to heart failure or electrical abnormalities.
- The primary pathology in cardiomyopathies typically involves the cardiac muscle, leading to a substantial health burden globally.
- Limited data exists on the prevalence and genetic profiles of cardiomyopathies in Lebanon, a country with high consanguinity rates.
Purpose of the Study:
- To investigate the genetic underpinnings of idiopathic cardiomyopathies in the Lebanese population.
- To identify novel mutations and document known genetic variants associated with various forms of cardiomyopathy.
Main Methods:
- Exome sequencing was employed to analyze the genetic basis of idiopathic cardiomyopathy cases.
- The study focused on patients from Lebanon, considering the country's unique demographic characteristics.
Main Results:
- Five cardiomyopathy cases were diagnosed, with exome sequencing revealing mutations in known genes (LMNA, PKP2, MYPN) in three individuals.
- Two brothers with hypertrophic cardiomyopathy presented a novel missense variation in the NPR1 gene, previously unreported in cardiomyopathy cases.
- The findings highlight both documented and novel genetic mutations contributing to cardiomyopathies in Lebanon.
Conclusions:
- The study successfully identified novel mutations in genes associated with cardiomyopathies within the Lebanese population.
- Clinical management of cardiomyopathies may benefit from expanded genetic profiling of a larger patient cohort.
Background:
Cardiomyopathies affect more than 0.5% of the general population. They are associated with high risk of sudden cardiac death, which can result from either heart failure or electrical abnormalities. Although different mechanisms underlie the various types of cardiomyopathies, a principal pathology is common to all and is usually at the level of the cardiac muscle. With a relatively high incidence rate in most countries, and a subsequent major health burden on both the families and governments, cardiomyopathies are gaining more attention by researchers and pharmaceutical companies as well as health government bodies. In Lebanon, there is no official data about the spectrum of the diseases in terms of their respective prevalence, clinical, or genetic profiles.
Methods:
We used exome sequencing to unravel the genetic basis of idiopathic cases of cardiomyopathies in Lebanon, a relatively small country with high rates of consanguineous marriages.
Results:
Five cases were diagnosed with different forms of cardiomyopathies, and exome sequencing revealed the presence of already documented or novel mutations in known genes in three cases: LMNA for an Emery Dreifuss Muscular Dystrophy case, PKP2 for an arrhythmogenic right ventricle dysplasia case, and MYPN for a dilated cardiomyopathy case. Interestingly two brothers with hypertrophic cardiomyopathy have a novel missense variation in NPR1, the gene encoding the natriuretic peptides receptor type I, not reported previously to be causing cardiomyopathies.
Conclusion:
Our results unravel novel mutations in known genes implicated in cardiomyopathies in Lebanon. Changes in clinical management however, require genetic profiling of a larger cohort of patients.
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