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Published on: July 20, 2022
Exploring Atrial Fibrillation: Understanding the Complex Relation Between Lifestyle and Genetic Factors
Rafael Tamayo-Trujillo1,2, Elius Paz-Cruz1,2, Santiago Cadena-Ullauri1,2
1Centro de Investigacion Genetica y Genomica, Facultad de Ciencias de la Salud Eugenio Espejo, Universidad UTE, Quito, Ecuador.
Insights
Genetic testing for atrial fibrillation (AF) is crucial for understanding cardiovascular disease (CVD) risk. This case highlights the importance of considering both genetic and lifestyle factors in AF management, even without clear genetic variants.
Area of Science:
- Cardiovascular genetics and genomics
- Personalized medicine in cardiology
- Molecular etiology of arrhythmias
Background:
- Cardiovascular diseases (CVDs), particularly atrial fibrillation (AF), are leading causes of mortality globally.
- AF risk factors include hypertension, obesity, smoking, and genetic predisposition.
- Genetic and genomic studies, especially next-generation sequencing (NGS), are vital for understanding CVDs and enabling personalized treatments.
Observation:
- A 56-year-old Ecuadorian woman with clinical signs of AF and significant risk factors (obesity, hypertension, smoking history, family history) underwent NGS.
- Despite strong clinical indicators, NGS did not identify disease-associated genetic variants.
- This case occurred in Ecuador, a low- and middle-income country facing challenges in accessing advanced genetic studies.
Findings:
- The absence of clear genetic variants in a patient with strong AF indicators underscores the complex interplay of genetic and environmental factors.
- Variants of uncertain significance may still hold potential implications for disease risk.
- NGS is a valuable tool for CVD management, aiding early diagnosis and personalized therapies.
Implications:
- Emphasizes the need for an integrated approach to AF management, combining genetic screening, lifestyle interventions, and tailored pharmacological treatments.
- Highlights the importance of further research into genetic and genomic studies in underrepresented populations, like those in Ecuador.
- Suggests that even in the absence of definitive genetic variants, genetic screening can inform patient care and risk assessment for cardiovascular diseases.
Abstract:
Cardiovascular diseases (CVDs) are the leading cause of death worldwide across diverse ethnic groups. Among these, atrial fibrillation (AF) stands as one of the most prevalent types of arrhythmias and the primary cause of stroke. Risk factors associated with AF include alcohol consumption, aging, high blood pressure, hypertension, inflammation, and genetic factors. A family history of CVD could indicate an increased risk. Consequently, genetic, and genomic testing should be performed to identify the molecular etiology of CVDs and assess at-risk patients. It is important to note that CVDs are the results of the complex interplay of genes and environmental factors, including ethnicity. In this case, the proband's clinic story includes a history of smoking abuse for 10 years (10 cigarettes per day), obesity, hypertension, and an associated familial history. These risk factors, along with genetic variants, could trigger the early onset of AF. In recent years, genetic and genomic studies have significantly advanced our understanding of CVD etiology, given that next-generation sequencing (NGS) allows for the identification of genetic variants that could contribute to these pathologies. Furthermore, NGS facilitates early diagnosis, personalized pharmacological approaches, and identification of novel biomarkers. Thus, NGS is a valuable tool in CVD management. However, such studies are limited in Ecuador, a low- and middle-income country. Several challenges contribute to this gap, encompassing economic, infrastructural, and educational obstacles. Notably, the cost of genetic and genomic studies may also pose a barrier, restricting access to a portion of the population. In this case report, we present a 56-year-old Ecuadorian woman, who has been diagnosed with AF; however, after performing NGS no disease-associated variants were found, despite having strong clinical signs and symptoms. In summary, this case report contributes valuable insights into the complex interplay between genetic and lifestyle factors in the development and management of AF. The case report aims to underscore the potential impact of genetic variants on disease risk, even when classified as variants of uncertain significance, and the importance of an integral approach to patient care that includes genetic screening, lifestyle interventions, and tailored pharmacological treatment.
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