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Updated: Mar 30, 2026

FISH for Pre-implantation Genetic Diagnosis
Published on: February 23, 2011
[Beckwith-Wiedemann syndrome: What do you search in prenatal diagnosis? About 14 cases]
C Le Vaillant1, C Beneteau2, N Chan-Leconte1
1Service de gynécologie obstétrique, CHU de Nantes, quai 38, boulevard Jean-Monnet, 44093 Nantes cedex, France.
Insights
Prenatal ultrasound can identify signs of Beckwith-Wiedemann syndrome (BWS), an overgrowth disorder. Early detection through ultrasound improves perinatal management for infants at high risk of neonatal complications.
Area of Science:
- Perinatology
- Medical Genetics
- Diagnostic Imaging
Background:
- Beckwith-Wiedemann syndrome (BWS) is the most common overgrowth syndrome.
- Diagnosis typically occurs postnatally, despite increased risks of neonatal hypoglycemia and childhood embryonal tumors.
- Identifying prenatal ultrasound markers is crucial for proactive management.
Observation:
- A retrospective study analyzed 14 perinatal BWS cases, with 4 detected prenatally via ultrasound.
- Prenatal ultrasound findings were compared with postnatal clinical features.
- Key prenatal signs include macrosomia (71.4%), increased abdominal circumference, and macroglossia (78.6%).
Findings:
- Minor features observed: visceromegaly (64%), hydramnios (50%), and genital anomalies in 80% of males (cryptorchidism/hypospadias).
- Macrosomia and macroglossia are significant indicators.
- Prenatal ultrasound can reveal characteristic anomalies associated with BWS.
Implications:
- Prenatal identification of BWS via ultrasound can alert clinicians to potential risks.
- Early diagnosis facilitates improved perinatal management strategies.
- Future molecular diagnosis and genetic counseling could enhance postnatal care for affected infants.
Objectives:
Beckwith-Wiedemann syndrome (BWS) is the most common overgrowth syndrome and has an incidence of 1/13,700. The majority of the cases are diagnosed after birth. Patients with BWS have an increased risk of neonatal hypoglycemia and embryonal tumors development in childhood. We wanted to identify the ultrasound signs that must alert physicians to prepare best perinatal management strategies.
Methods:
We conducted a retrospective study of a population of 14 cases of BWS diagnosed in perinatal period; four of them were detected prenatally by ultrasound. The anomalies signs described in prenatal were analyzed and compared with the clinical features of the postnatal period.
Results:
The major features reported were represented by macrosomia for 71.4% with an increase of abdominal circumference, and macroglossia for 78.6%. The minor features were various with 64% of visceromegaly (nephromegaly and/or hepatomegaly), 50% of hydramnios and for 80% of male children a genital anomaly (crytorchidism and/or hypospadias).
Conclusion:
This study identified some prenatal ultrasound signs that should alert the clinician to the possibility of BWS. A genetic conseling, after confirmation by molecular diagnosis, could be proposed in a near future in prenatal, and could improve postnatal management strategies for these affected children at high postnatal risk.
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