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先天性膈疝(CDH)患者的全基因表达谱分析。

Global gene expression profiling in congenital diaphragmatic hernia (CDH) patients.

机构信息

Department of Pediatric Surgery, Faculty of Medicine, Inonu University, Malatya, Turkey.

Department of Medical Genetics, Faculty of Medicine, Inonu University, Malatya, Turkey.

出版信息

Funct Integr Genomics. 2022 Jun;22(3):359-369. doi: 10.1007/s10142-022-00837-9. Epub 2022 Mar 9.

Abstract

Congenital diaphragmatic hernia (CDH) is an anomaly characterized by a defect in the diaphragm, leading to the passage of intra-abdominal organs into the thoracic cavity. Herein, the presented work analyzes the global gene expression profiles in nine CDH and one healthy newborn. All of the patients had left posterolateral (Bochdalek) diaphragmatic hernia, operated via an abdominal approach, and stomach and bowels in the thorax cavity. Some patients also had additional anomalies. A total of 560 differentially regulated genes were measured. Among them, 11 genes showed significant changes in expression associated with lung tissue, vascular structure development, and vitamin A metabolism, which are typical ontologies related to CDH etiology. Among them, SLC25A24 and RAB3IL1 are involved in angiogenesis, HIF1A and FOXC2-AS1 are related with the alveolus, MAGI2-AS3 is associated with the diaphragm, LHX4 and DHH are linked with the lung, and BRINP1, FZD9, WNT4, and BLOC1S1-RDH5 are involved in retinol. Besides, the expression levels of some previously claimed genes with CDH etiology also showed diverse expression patterns in different patients. All these indicated that CDH is a complex, multigenic anomaly, requiring holistic approaches for its elucidation.

摘要

先天性膈疝 (CDH) 是一种以膈缺损为特征的异常,导致腹腔内器官进入胸腔。在此,所进行的工作分析了 9 例 CDH 和 1 例健康新生儿的全基因组表达谱。所有患者均行经腹前路手术治疗左侧后外侧(Bochdalek)膈疝,且胃和肠均位于胸腔内。部分患者还存在其他畸形。共测量了 560 个差异调节基因。其中,11 个基因的表达与肺组织、血管结构发育和维生素 A 代谢相关,这些基因的变化与 CDH 的病因学有关。其中,SLC25A24 和 RAB3IL1 参与血管生成,HIF1A 和 FOXC2-AS1 与肺泡有关,MAGI2-AS3 与膈有关,LHX4 和 DHH 与肺有关,BRINP1、FZD9、WNT4 和 BLOC1S1-RDH5 与视黄醇有关。此外,一些先前声称与 CDH 病因有关的基因的表达水平在不同患者中也表现出不同的表达模式。所有这些都表明 CDH 是一种复杂的、多基因异常,需要采用整体方法来阐明其病因。

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