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Congenital heart defects in Noonan syndrome: Diagnosis, management, and treatment
1Sorbonne University, Paris, France.
Insights
Noonan syndrome is a genetic disorder often causing congenital heart disease. Early recognition of its varied symptoms is vital for patient care and potential new treatments targeting the RAS pathway.
Area of Science:
- Genetics
- Cardiology
- Molecular Biology
Background:
- Noonan syndrome is a genetic disorder with high rates of cardiovascular involvement, including congenital heart disease.
- PTPN11 mutations are found in over 50% of cases, leading to hyperactivated RAS/mitogen-activated protein kinase signaling.
- Other genes involved in RASopathies share similar biological pathways.
Purpose of the Study:
- To highlight the importance of recognizing Noonan syndrome's diverse clinical presentations.
- To discuss the role of genotype-phenotype correlations in patient prognostication.
- To explore potential therapeutic avenues, including RAS pathway inhibitors.
Main Methods:
- Review of clinical and genetic data for Noonan syndrome patients.
- Analysis of genotype-phenotype associations.
- Discussion of emerging therapeutic strategies.
Main Results:
- Noonan syndrome presents with significant cardiovascular anomalies, primarily congenital heart disease.
- Molecular diagnosis is available but identification can be challenging due to phenotypic variability.
- Genotype-phenotype correlations aid in predicting patient outcomes.
Conclusions:
- Clinical vigilance for Noonan syndrome is crucial, especially in patients with congenital heart disease.
- Understanding genotype-phenotype relationships improves patient prognostication.
- RAS pathway inhibitors show promise as a future treatment for Noonan syndrome, pending further research.
Abstract:
Noonan syndrome is a pleomorphic genetic disorder, in which a high percentage of affected individuals have cardiovascular involvement, most prevalently various forms of congenital heart disease (i.e., pulmonary valve stenosis, septal defects, left-sided lesions, and complex forms with multiple anomalies). Care includes attentiveness to several comorbidities, some directly impacting cardiac management (bleeding diatheses and lymphatic anomalies). More than 50% of patients with Noonan syndrome harbor PTPN11 pathogenic variation, which results in hyperactivation of RAS/mitogen-activated protein kinase signaling. Several other disease genes with similar biological effects have been uncovered for NS and phenotypically related disorders, collectively called the RASopathies. Molecular diagnosis with gene resequencing panels is now widely available, but phenotype variability and in some cases, subtlety, continues to make identification of Noonan syndrome difficult. Until genetic testing becomes universal for patients with congenital heart disease, alertness to Noonan syndrome's broad clinical presentations remains crucial. Genotype-phenotype associations for Noonan syndrome enable better prognostication for affected patients when a molecular diagnosis is established. We still lack Noonan syndrome-specific treatment; however, newly developed anticancer RAS pathway inhibitors could fill that gap if safety and efficacy can be established for indications such as pulmonary valve stenosis.
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