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Published on: May 11, 2015
SOX17-Associated Pulmonary Hypertension in Children: A Distinct Developmental and Clinical Syndrome
Mary P Mullen1, D Dunbar Ivy2, Nidhy P Varghese3
1Department of Cardiology, Boston Children's Hospital, Boston, MA; Department of Pediatrics, Harvard Medical School, Boston, MA.
Insights
Children with SOX17 variants have severe pulmonary arterial hypertension (PAH) with unique vascular abnormalities and congenital heart defects. This SOX17-associated PAH highlights the gene's role in pulmonary vascular development.
Area of Science:
- Genetics
- Pediatric Cardiology
- Pulmonology
Background:
- Pulmonary arterial hypertension (PAH) in children can be linked to genetic factors.
- SRY-box transcription factor 17 (SOX17) is a newly identified risk gene for heritable and congenital heart disease-associated PAH.
Purpose of the Study:
- To characterize the clinical, hemodynamic, imaging, and pathologic features of pediatric PAH associated with SOX17 variants.
- To understand the role of SOX17 in pulmonary vascular development.
Main Methods:
- A multi-institutional cohort of pediatric PAH patients with SOX17 variants was assembled.
- Exome and PAH gene panel sequencing identified subjects.
- Data were collected from registries and retrospective chart review.
Main Results:
- Thirteen children (1.6-16 years) with SOX17 variants and PAH were identified.
- Patients presented with severe PAH, elevated pulmonary artery pressure and resistance, and no response to vasodilators.
- Imaging revealed atypical pulmonary artery anatomy, including dilation and tortuosity, and histologic findings showed plexiform arteriopathy and capillary aneurysms.
Conclusions:
- SOX17-associated PAH is a distinct genetic syndrome with early-onset severe disease.
- It is characterized by significant pulmonary vascular abnormalities and a high prevalence of congenital heart disease.
- These findings suggest a critical role for SOX17 in normal pulmonary vascular development.
Objective:
To characterize clinical, hemodynamic, imaging, and pathologic findings in children with pulmonary arterial hypertension (PAH) and variants in SRY-box transcription factor 17 (SOX17), a novel risk gene linked to heritable and congenital heart disease-associated PAH.
Study Design:
We assembled a multi-institutional cohort of children with PAH and SOX17 variants enrolled in the Pediatric Pulmonary Hypertension Network (PPHNet) and other registries. Subjects were identified through exome and PAH gene panel sequencing. Data were collected from registries and retrospective chart review.
Results:
We identified 13 children (8 female, 5 male) aged 1.6-16 years at diagnosis with SOX17 variants and PAH. Seven patients had atrial septal defects and 2 had patent ductus arteriosus. At diagnostic cardiac catheterization, patients had severely elevated mean pulmonary artery (PA) pressure (mean 78, range 47-124 mmHg) and markedly elevated indexed pulmonary vascular resistance (mean 25.9, range 4.9-55 WU∗m2). No patients responded to acute vasodilator testing. Catheter and computed tomography angiography imaging demonstrated atypical PA anatomy including severely dilated main pulmonary arteries, lack of tapering in third and fourth order pulmonary arteries, tortuous 'corkscrewing' pulmonary arteries, and abnormal capillary 'blush.' Several children had PA stenoses and 2 had systemic arterial abnormalities. Histologic examination of explanted lungs from 3 patients disclosed plexiform arteriopathy and extensive aneurysmal dilation of alveolar septal capillaries.
Conclusions:
SOX17-associated PAH is a distinctive genetic syndrome characterized by early onset severe PAH, extensive pulmonary vascular abnormalities, and high prevalence of congenital heart disease with intracardiac and interarterial shunts, suggesting a role for SOX17 in pulmonary vascular development.
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