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Comprehensive Genetic Evaluation of Bulgarian Children with Syndromic Craniosynostosis
T Delchev1, S Hadjidekova2, S Bichev3
1Department of Clinical Genetics, University Children Hospital, Medical University - Sofia, Sofia Bulgaria.
Insights
Submicroscopic chromosomal rearrangements, particularly duplications, are frequently found in children with syndromic craniosynostosis (SC). These genetic defects play a significant role in the development of SC, highlighting the condition's complex genetic basis.
Area of Science:
- Genetics
- Medical Genetics
- Developmental Biology
Background:
- Syndromic craniosynostosis (SC) involves premature suture closure, leading to dysmorphism and potential intracranial pressure.
- The incidence and complications of SC underscore its significance as a medical problem.
Purpose of the Study:
- To investigate the complex genetic causes of syndromic craniosynostosis.
- To identify submicroscopic chromosomal abnormalities in affected children.
Main Methods:
- Systematic genetic analysis of 39 children with SC.
- Utilized conventional cytogenetics, multiplex ligation-dependent probe amplification (MLPA), and array-based comparative genomic hybridization (aCGH).
Main Results:
- Pathological findings identified in 15.3% of cases via aCGH and 7.7% via MLPA.
- Submicroscopic chromosomal rearrangements were present in 12.8% of patients with normal karyotypes.
- Duplications were more prevalent than deletions among the identified rearrangements.
Conclusions:
- Systematic genetic evaluation reveals a high prevalence of submicroscopic chromosomal rearrangements in SC.
- These rearrangements, especially duplications, are implicated as a leading cause in SC pathogenesis.
- The genetic complexity of SC is confirmed by findings across various chromosomal regions.
Abstract:
Syndromic craniosynostosis (SC) is a genetically determined premature closure of one or more of the cranial sutures, which may result in severe dysmorphism, increased intracranial pressure along with many other clinical manifestations. The considerable risk of complications along with their significant incidence makes these cranial deformations an important medical problem. Aiming to elucidate the complex genetic etiology of syndromic craniosynostosis, we investigated 39 children, screened systematically with a combination of conventional cytogenetic analysis, multiplex ligation-dependent probe amplification (MLPA) and array-based comparative genomic hybridisation (aCGH). Pathological findings were established in 15.3% (6/39) of the cases using aCGH, in 7.7% (3/39) using MLPA and 2.5% (1/39) using conventional karyotyping. About 12.8% (5/39) of the patients with normal karyotype carried submicroscopic chromosomal rearrangements. Duplications were found to be more common than deletions. Conclusion: The systematic genetic evaluation of children with SC revealed a high prevalence of submicrosopic chromosomal rearrangements (most commonly duplications). This suggests the leading role of those defects in the pathogenesis of syndromic craniosynostosis. The genetic complexity of SC was reaffirmed by the dis Bulgaria covery of pathological findings in various chromosomal regions. Certain genes were discussed in conjunction with craniosynostosis.
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