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扭转关于具有同卵双胞胎特征的人类脐带缠绕起源的理论。

Twisting the theory on the origin of human umbilical cord coiling featuring monozygotic twins.

机构信息

https://ror.org/05xvt9f17 Molecular Epidemiology, Department of Biomedical Data Sciences, Leiden University Medical Center, Leiden, Netherlands.

https://ror.org/05xvt9f17 Sequencing Analysis Support Core, Department of Biomedical Data Sciences, Leiden University Medical Center, Leiden, Netherlands.

出版信息

Life Sci Alliance. 2024 Jun 3;7(8). doi: 10.26508/lsa.202302543. Print 2024 Aug.

Abstract

The human umbilical cord (hUC) is the lifeline that connects the fetus to the mother. Hypercoiling of the hUC is associated with pre- and perinatal morbidity and mortality. We investigated the origin of hUC hypercoiling using state-of-the-art imaging and omics approaches. Macroscopic inspection of the hUC revealed the helices to originate from the arteries rather than other components of the hUC. Digital reconstruction of the hUC arteries showed the dynamic alignment of two layers of muscle fibers in the tunica media aligning in opposing directions. We observed that genetically identical twins can be discordant for hUC coiling, excluding genetic, many environmental, and parental origins of hUC coiling. Comparing the transcriptomic and DNA methylation profile of the hUC arteries of four twin pairs with discordant cord coiling, we detected 28 differentially expressed genes, but no differentially methylated CpGs. These genes play a role in vascular development, cell-cell interaction, and axis formation and may account for the increased number of hUC helices. When combined, our results provide a novel framework to understand the origin of hUC helices in fetal development.

摘要

人类脐带(hUC)是连接胎儿和母亲的生命线。hUC 的过度卷曲与产前和围产期发病率和死亡率有关。我们使用最先进的成像和组学方法研究了 hUC 过度卷曲的起源。对 hUC 的宏观检查表明,螺旋来自动脉,而不是 hUC 的其他成分。hUC 动脉的数字重建显示,中膜的两层肌纤维动态对齐,呈相反方向排列。我们观察到,遗传上相同的双胞胎可能在 hUC 卷曲方面存在不一致,排除了遗传、许多环境和父母来源的 hUC 卷曲。比较四对具有不同卷曲脐带的双胞胎的 hUC 动脉的转录组和 DNA 甲基化谱,我们检测到 28 个差异表达的基因,但没有差异甲基化的 CpG。这些基因在血管发育、细胞-细胞相互作用和轴形成中发挥作用,可能解释了 hUC 螺旋数量的增加。当结合在一起时,我们的结果为理解胎儿发育中 hUC 螺旋的起源提供了一个新的框架。

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