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Published on: March 27, 2012
Longitudinal observations on 15 children with Wiedemann-Beckwith syndrome
E Y Weng1, J B Moeschler, J M Graham
1Medical Genetics Birth Defects Center, Steven Spielberg Pediatric Research Center, Ahmanson Pediatric Center, Cedars-Sinai Medical Center, UCLA School of Medicine, USA.
Insights
Wiedemann-Beckwith syndrome (WBS) is characterized by large placentas and fetal size, often leading to early delivery. Despite initial growth acceleration, children with WBS show normal development and few long-term medical issues.
Area of Science:
- Genetics
- Pediatrics
- Maternal-Fetal Medicine
Background:
- Wiedemann-Beckwith syndrome (WBS) is a rare overgrowth disorder with variable clinical manifestations.
- Accurate diagnosis and understanding long-term outcomes are crucial for patient management.
Purpose of the Study:
- To clarify diagnostic clinical characteristics of WBS.
- To assess long-term growth and developmental expectations in WBS patients.
Main Methods:
- Follow-up study of 15 patients diagnosed with WBS.
- Clinical assessment of diagnostic features, growth, development, and medical history.
- Cytogenetic studies in nine patients.
Main Results:
- Patients with WBS often exhibit polyhydramnios and large placentas, facilitating prenatal suspicion.
- Abdominal wall defects and macroglossia are key diagnostic indicators.
- Infants present with macrosomia, with growth deceleration over time.
- No cytogenetic variations were detected in studied patients.
- Tumor incidence was low, with normal development and few medical problems observed longitudinally.
Conclusions:
- Prenatal detection of specific features can aid in WBS diagnosis and perinatal management.
- WBS is associated with macrosomia but generally normal long-term growth, development, and medical outcomes.
- Further research may be needed to understand the genetic basis in cases without detectable cytogenetic variations.
Abstract:
We conducted a follow-up study on 15 patients with Wiedemann-Beckwith syndrome (WBS) to further clarify major and minor diagnostic clinical characteristics and longterm expectations for growth and development. We found patients with WBS tended to have polyhydramnios with large placentas which were almost twice normal placental weight. The large fetal size and polyhydramnios often resulted in early delivery with occasional perinatal mortality (three cases). Increased placental size, with associated polyhydramnios resulting in excessive umbilical cord length, may be useful in suspecting WBS prior to delivery, thereby facilitating perinatal management. The presence of abdominal wall defects and/or macroglossia may help to confirm the diagnosis. At birth, patients were almost 2 standard deviations above the expected mean for gestational age, length, and weight. This trend continued through early childhood and then excessive size became less dramatic with increasing age. We detected no cytogenetic variations in nine patients who had studies done and, to date, no tumors have been detected other than a gastric teratoma that was evident in one infant at birth. Longitudinally, the children have not had an unusual incidence of medical problems, and long-term ultrasound monitoring was not burdensome to the families. In comparison, mental and social development to unaffected siblings and cousins appeared normal.
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