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Beckwith-Wiedemann 综合征的胎盘:基因型-表型关联、绒毛外滋养细胞过度增生和胎盘间质发育不良。

The placenta in Beckwith-Wiedemann syndrome: genotype-phenotype associations, excessive extravillous trophoblast and placental mesenchymal dysplasia.

机构信息

Anatomical Pathology, Mater Health Services, Raymond Terrace, South Brisbane, Qld 4101, Australia.

出版信息

Pathology. 2012 Oct;44(6):519-27. doi: 10.1097/PAT.0b013e3283559c94.

Abstract

AIMS

Placental mesenchymal dysplasia (PMD) is a rare condition which is associated with the disparate fetal outcomes of Beckwith-Wiedemann syndrome (BWS), fetal growth restriction or intrauterine and neonatal death. We aimed to investigate the potential epigenetic/genetic anomalies associated with PMD and their relationship with the different causes of BWS.

METHODS

Eight archival cases in which PMD, BWS or both were diagnosed were investigated by correlating morphology with p57 Kip2 expression, XY fluorescence in situ hybridisation (FISH) analysis and DNA genotyping.

RESULTS

Placentae from BWS cases caused by aberrant IC2 methylation, leading to abnormal p57 Kip2 expression, did not show PMD but had a striking excess of extravillous trophoblast. PMD in the absence of BWS was caused by androgenetic/biparental mosaicism. The single case of BWS with PMD was due to mosaic uniparental disomy of 11p15.5. In the latter two aetiologies, our results indicate that the uniparental disomy is confined to the villous mesenchyme.

CONCLUSIONS

These results suggest that the link between PMD and BWS is uniparental disomy of genes confined to the telomeric IC1 region of 11p15.5. A strong candidate gene is IGF2, a known growth factor of placental mesenchyme.

摘要

目的

胎盘间质发育不良(PMD)是一种罕见的疾病,与贝克威思-威德曼综合征(BWS)、胎儿生长受限或宫内和新生儿死亡等不同的胎儿结局有关。我们旨在研究与 PMD 相关的潜在表观遗传/遗传异常及其与不同原因的 BWS 的关系。

方法

通过比较形态学与 p57 Kip2 表达、XY 荧光原位杂交(FISH)分析和 DNA 基因分型,对 8 例同时诊断为 PMD、BWS 或两者的存档病例进行了研究。

结果

由于异常的 IC2 甲基化导致 p57 Kip2 表达异常的 BWS 病例的胎盘不显示 PMD,但有明显的绒毛外滋养细胞增多。没有 BWS 的 PMD 是由雄激素/双亲嵌合体引起的。唯一的 BWS 伴 PMD 病例是由于 11p15.5 的单亲二体性。在后两种病因中,我们的结果表明单亲二体性仅限于绒毛间质。

结论

这些结果表明,PMD 与 BWS 之间的联系是局限于 11p15.5 的端粒 IC1 区域的基因的单亲二体性。一个强有力的候选基因是 IGF2,它是胎盘间质的已知生长因子。

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