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先天性囊状结肠:遗传因素还是环境影响的作用?

Congenital Pouch Colon: Role of Genetics or Environmental Influence?

机构信息

Department of Pediatric Surgery, SMS Medical College, Jaipur,

Department of Zoology, University of Rajasthan, Jaipur, India.

出版信息

Pathobiology. 2018;85(5-6):332-341. doi: 10.1159/000492432. Epub 2018 Sep 17.

Abstract

BACKGROUND

Congenital pouch colon (CPC), a high type of anorectal malformation, is a sporadic disease and several environmental factors are known to be involved in its pathology. To the best of our knowledge, no familial incidence of CPC has been reported anywhere in the literature so far.

AIM

In the present study, which is first of its kind, we have reported the familial incidences of CPC and also tried to elucidate the role of genetics in this pathology.

METHODS

We have reported 1 familial pedigree of CPC and 2 incidences of dizygotic twins (DZ), out of them one is affected and another one is normal. Highly comprehensive microarray CytoScan HD from Affymetrix was employed to understand the defects underlying submicroscopic genomic imbalance like segment duplication and deletion of the twin patients vis-à-vis their parents and unaffected siblings in these DZ twins.

RESULTS

A total of 21 copy number variations (CNVs) were reported in the patient samples that did not overlap with the CNVs in normal parents and healthy sibling, including 5 loss, 3 LOH and 13 gain with size varied from 95 bp to 77 kbp. Genetic analysis revealed involvement of 12 potential genetic loci on Chr 1, 2, 3, 4, 6, 11, and 16.

CONCLUSION

Genetic study found that CPC could be a developmental disorder. These findings are important for further elucidating genetic causes of CPC pathogenesis.

摘要

背景

先天性囊状结肠(CPC)是一种高位肛门直肠畸形,是一种散发性疾病,已知有几个环境因素与它的病理有关。据我们所知,目前为止,文献中还没有报告过 CPC 的家族性发病。

目的

在本研究中,我们首次报告了 CPC 的家族性发病,并试图阐明遗传在这一病理中的作用。

方法

我们报告了一个 CPC 的家族性发病和两个双卵双胞胎(DZ)的发病,其中一个受影响,另一个正常。我们使用了高度综合的微阵列 CytoScan HD 芯片(Affymetrix),以了解双胞胎患者相对于他们的父母和未受影响的兄弟姐妹的亚微观基因组不平衡的缺陷,包括片段重复和缺失。

结果

在患者样本中报告了总共 21 个拷贝数变异(CNVs),这些变异与正常父母和健康兄弟姐妹的 CNVs 没有重叠,包括 5 个缺失、3 个 LOH 和 13 个增益,大小从 95 bp 到 77 kbp 不等。遗传分析显示,12 个潜在的遗传基因座涉及 1 号、2 号、3 号、4 号、6 号、11 号和 16 号染色体。

结论

遗传研究发现,CPC 可能是一种发育障碍。这些发现对于进一步阐明 CPC 发病机制的遗传原因很重要。

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