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The Age Dependent Progression of Hajdu-Cheney Syndrome in Two Families
Jitka Jirečková1, Martin Magner1, Lukáš Lambert2
1Department of Pediatrics and Adolescent Medicine, First Faculty of Medicine, Charles University and General University Hospital in Prague, Prague, Czech Republic.
Insights
Hajdu-Cheney syndrome (HCS) is a rare genetic disorder characterized by skeletal abnormalities. This study details its progression, identifying a NOTCH2 gene variant as a key factor in its development.
Area of Science:
- Genetics
- Skeletal Dysplasias
- Rare Diseases
Background:
- Hajdu-Cheney syndrome (HCS) is a rare, autosomal dominant multi-system disorder.
- Characterized by craniofacial dysmorphy, skeletal anomalies including acro-osteolysis and osteoporosis, and dental issues.
Purpose of the Study:
- To report the clinical and radiographic progression of HCS in five patients from two families.
- To identify the genetic variants associated with HCS and analyze their impact.
Main Methods:
- Clinical and radiographic assessment of five HCS patients.
- Molecular analysis using a custom capture array for 230 genes.
- Confirmation of pathogenic variants via PCR and Sanger sequencing.
Main Results:
- Observed age-dependent progression including pain, digit shortening, kyphoscoliosis, and Wormian bones.
- Identified a NOTCH2 gene variant (c.6255T>A, p.Cys2085*) causing a premature stop-codon in two patients.
- Bone mineral density did not improve with treatment in one patient.
Conclusions:
- HCS is a slowly progressive disease with a frequently unfavorable prognosis in elderly patients.
- Dental anomalies, osteoporosis, and skeletal complications requiring surgery are significant concerns.
- The NOTCH2 gene variant is implicated in the pathogenesis of HCS.
Abstract:
Hajdu-Cheney syndrome (HCS) is a rare multi-system disease with autosomal dominant inheritance and skeletal involvement, resulting mostly in craniofacial dysmorphy with mid-face hypoplasia, dental anomalies, short stature, scoliosis, shortening of the digits and nail beds, acro-osteolysis and osteoporosis. We report the progression of clinical and radiographic findings in five patients with Hajdu-Cheney syndrome from two families. A custom capture array designed to capture exons and adjacent intron sequences of 230 selected genes were used for molecular analyses, and the pathogenic variants identified were confirmed by PCR and Sanger sequencing. In both families we observed age-dependent changes in the disease, with a progression of pain in older patients, a shortening of digits and nail beds on both the hands and feet, kyphoscoliosis and the persistence of Wormian bones in lambdoid sutures. Molecular analyses performed in two patients revealed that they are heterozygotes for a c.6255T>A (p.Cys2085*) variant in the NOTCH2 gene, resulting in a premature stop-codon. Bone mineral density (Z-score < -2) did not improved in a girl treated with calcium and vitamin D supplementation during childhood and bisphosphonate during adolescence. Hajdu-Cheney syndrome is a slowly progressive disease with a frequently unfavourable prognosis in elderly patients, especially for the development of dental anomalies, osteoporosis and the progression of skeletal complications requiring orthopedic surgeries.
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