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Severe X-linked chondrodysplasia punctata in nine new female fetuses
Mathilde Lefebvre1,2,3, Fabienne Dufernez4, Ange-Line Bruel2
1Centre de Génétique et Centre de Référence Anomalies du Développement et Syndromes Malformatifs de l'Est, FHU-TRANSLAD, CHU Dijon, France.
Insights
Conradi-Hünermann-Happle (CDPX2) syndrome, a skeletal dysplasia, presents varied symptoms in females. Prenatal ultrasound findings like bone abnormalities and stippling can indicate CDPX2, often due to new mutations.
Area of Science:
- Medical Genetics
- Skeletal Dysplasias
- Prenatal Diagnosis
Background:
- Conradi-Hünermann-Happle (CDPX2) syndrome is a rare X-linked dominant skeletal dysplasia.
- While typically lethal in males, affected females exhibit significant clinical variability.
- Severe fetal presentations are uncommon, with limited antenatal case reports.
Purpose of the Study:
- To comprehensively describe the prenatal phenotype of CDPX2 syndrome in female fetuses.
- To correlate ultrasound findings with genetic mutations and postnatal outcomes.
- To improve early identification of CDPX2 syndrome in utero.
Main Methods:
- Retrospective analysis of nine antenatally diagnosed female fetuses with EBP mutations.
- Detailed review of ultrasound, postnatal X-ray, and clinical examination findings.
- Investigation of X-inactivation patterns in familial cases and affected fetal tissues.
Main Results:
- Diagnosis occurred at a mean gestational age of 22 weeks.
- Key ultrasound findings included shortened and bowed long bones, punctate epiphysis, and spinal abnormalities.
- Postnatal evaluation revealed ichthyosis and epiphyseal stippling, with asymmetric bone deformities.
Conclusions:
- Asymmetric bone shortening, bowing, and cartilage stippling on prenatal imaging suggest CDPX2 syndrome in female fetuses.
- The majority of these severe fetal cases arise from de novo mutations.
- Early prenatal detection aids in timely genetic counseling and management planning.
Objectives:
Conradi-Hünermann-Happle [X-linked dominant chondrodysplasia punctata 2 (CDPX2)] syndrome is a rare X-linked dominant skeletal dysplasia usually lethal in men while affected women show wide clinical heterogeneity. Different EBP mutations have been reported. Severe female cases have rarely been reported, with only six antenatal presentations.
Methods:
To better characterize the phenotype in female fetuses, we included nine antenatally diagnosed cases of women with EBP mutations. All cases were de novo except for two fetuses with an affected mother and one case of germinal mosaicism.
Results:
The mean age at diagnosis was 22 weeks of gestation. The ultrasound features mainly included bone abnormalities: shortening (8/9 cases) and bowing of the long bones (5/9), punctuate epiphysis (7/9) and an irregular aspect of the spine (5/9). Postnatal X-rays and examination showed ichthyosis (8/9) and epiphyseal stippling (9/9), with frequent asymmetric short and bowed long bones. The X-inactivation pattern of the familial case revealed skewed X-inactivation in the mildly symptomatic mother and random X-inactivation in the severe fetal case. Differently affected skin samples of the same fetus revealed different patterns of X-inactivation.
Conclusion:
Prenatal detection of asymmetric shortening and bowing of the long bones and cartilage stippling should raise the possibility of CPDX2 in female fetuses, especially because the majority of such cases involve de novo mutations.
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