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因 DYNC2H1 基因变异的复合杂合性导致的复发性短肋胸廓发育不良 3 型的早期产前诊断:一种“超声优先”的方法

Early prenatal diagnosis of a recurrent case of short-rib thoracic dysplasia 3 due to compound heterozygosity for variations in the DYNC2H1 gene: an "ultrasound first" approach.

作者信息

Fontana Paolo, Agolini Emanuele, Cocciadiferro Dario, Mazzarelli Laura Letizia, Di Meglio Aniello, Novelli Antonio, Scarano Gioacchino, Lombardi Cinzia, Ciavarella Maria, Lonardo Fortunato

机构信息

Medical Genetics Unit - P.O. Gaetano Rummo - A.O.R.N, Benevento (BN), Italy San Pio.

Translational Cytogenomics Research Unit, Bambino Gesù Children's Hospital, IRCCS, Rome, Italy.

出版信息

J Matern Fetal Neonatal Med. 2023 Dec;36(1):2205985. doi: 10.1080/14767058.2023.2205985.

Abstract

Short-rib thoracic dysplasia 3 with or without polydactyly (OMIM # 613091) represents a clinical spectrum encompassing a heterogeneous group of skeletal dysplasias associated with homozygous or compound heterozygous mutations of DYNC2H1. We describe the case of a couple with two consecutive therapeutic abortions due to a diagnosis of short-rib thoracic dysplasia mutations. In the first pregnancy, the diagnosis has been made at 21 weeks. In the second one, an accurate and early ultrasound examination allowed a diagnosis at 12 weeks. DYNC2H1 mutations were confirmed in both cases. In this report, we underline the importance of an ultrasound evaluation at the end of the first trimester of pregnancy in the detection of early signs of skeletal dysplasias. An early prenatal diagnosis of a short-rib skeletal dysplasia, such as for other severe skeletal dysplasias, is critical to offer a couple the chance of a weighted, informed, and less traumatic decision about the continuation of the pregnancy.

摘要

伴或不伴多指(趾)畸形的短肋胸廓发育不良3型(OMIM # 613091)代表了一系列临床病症,涵盖了一组与动力蛋白2重链1(DYNC2H1)纯合或复合杂合突变相关的骨骼发育不良的异质性群体。我们描述了一对夫妇的病例,他们因诊断出短肋胸廓发育不良突变而连续进行了两次治疗性流产。在第一次怀孕时,21周时做出了诊断。在第二次怀孕时,一次准确的早期超声检查在12周时做出了诊断。两例均证实存在DYNC2H1突变。在本报告中,我们强调了在妊娠早期进行超声评估对于检测骨骼发育不良早期迹象的重要性。对于短肋骨骼发育不良,如同其他严重骨骼发育不良一样,早期产前诊断对于为夫妇提供一个关于是否继续妊娠的权衡、明智且创伤较小的决策机会至关重要。

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