Ellis-van Creveld syndrome: prenatal diagnosis, molecular analysis and genetic counseling
Chih-Ping Chen1, Yi-Ning Su, Chin-Yuan Hsu
1Department of Obstetrics and Gynecology, Mackay Memorial Hospital, Taichung, Taiwan. cpc_mmh@yahoo.com
Insights
This study details two siblings with Ellis-van Creveld (EvC) syndrome, highlighting key perinatal findings and molecular genetic analysis. Early prenatal ultrasound detection of skeletal abnormalities and polydactyly can indicate EvC syndrome, guiding genetic counseling.
Area of Science:
- Medical Genetics
- Prenatal Diagnosis
- Skeletal Dysplasias
Background:
- Ellis-van Creveld (EvC) syndrome is a rare genetic disorder characterized by disproportionate dwarfism, postaxial polydactyly, and congenital heart defects.
- Accurate diagnosis and genetic counseling are crucial for families affected by EvC syndrome.
Observation:
- Recurrent fetal skeletal dysplasia was noted in a pregnancy, prompting genetic counseling.
- Prenatal ultrasound revealed significant skeletal abnormalities including short long bones, postaxial polydactyly, thoracic narrowness, and endocardial cushion defects in two siblings.
- Phenotypic presentation in both siblings was consistent with Ellis-van Creveld syndrome.
Findings:
- Molecular genetic analysis identified heterozygous mutations in the EVC2 gene in the affected siblings and their mother.
- Specific mutations included a 26-bp deletion (c.871-2_894del26) and a nonsense mutation (c.1195C >T, p.R399X).
Implications:
- Prenatal sonographic identification of endocardial cushion defects with short long bones should raise suspicion for EvC syndrome.
- Molecular analysis of EVC and EVC2 genes is vital for confirming diagnosis and providing genetic counseling for suspected cases.
Objective:
To present the perinatal findings and molecular genetic analysis of two siblings with Ellis-van Creveld (EvC) syndrome.
Materials, Methods And Results:
A 33-year-old woman, gravida 3, para 1, was referred for genetic counseling at 18 gestational weeks because of recurrent fetal skeletal dysplasia. Two years previously, she had delivered a 1,316-g dead male baby at 28 gestational weeks with a karyotype of 46,XY, postaxial polydactyly of the hands, thoracic narrowness, endocardial cushion defects, transposition of the great arteries, shortening of the long bones, malposition of the toes, and hypoplastic nails. During this pregnancy, prenatal ultrasound at 18 gestational weeks revealed shortening of the long bones (equivalent to 15 weeks), postaxial polydactyly of both hands, thoracic narrowness, and endocardial cushion defects. The pregnancy was subsequently terminated, and a 236-g female fetus was delivered with a karyotype of 46,XX, postaxial polydactyly of the hands, thoracic dysplasia, endocardial cushion defects, shortening of the long bones, and malposition of the toes and hypoplastic nails. The phenotype of each of the two siblings was consistent with EVC syndrome. Molecular analysis of the EVC and EVC2 genes revealed heterozygous mutations in the EVC2 gene. A heterozygous deletion mutation of a 26-bp deletion of c.871-2_894del26 encompassing the junction between intron 7 and exon 8 of the EVC2 gene was found in the mother and two siblings, and a heterozygous nonsense mutation of c.1195C >T, p.R399X in exon 10 of the EVC2 gene was found in the father and two siblings.
Conclusion:
Prenatal sonographic identification of endocardial cushion defects in association with shortening of the long bones should alert clinicians to the possibility of EvC syndrome and prompt a careful search of hexadactyly of the hands. Molecular analysis of the EVC and EVC2 genes is helpful in genetic counseling in cases with prenatally detected postaxial polydactyly, thoracic narrowness, short limbs and endocardial cushion defects.
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