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首页> 外文期刊>Disease models & mechanisms: DMM >Defining the molecular pathologies in cloaca malformation: similarities between mouse and human
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Defining the molecular pathologies in cloaca malformation: similarities between mouse and human

机译:定义泄殖腔畸形的分子病理学:小鼠和人类之间的相似性

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Anorectal malformations are congenital anomalies that form a spectrum of disorders, from the most benign type with excellent functional prognosis, to very complex, such as cloaca malformation in females in which the rectum, vagina and urethra fail to develop separately and instead drain via a single common channel into the perineum. The severity of this phenotype suggests that the defect occurs in the early stages of embryonic development of the organs derived from the cloaca. Owing to the inability to directly investigate human embryonic cloaca development, current research has relied on the use of mouse models of anorectal malformations. However, even studies of mouse embryos lack analysis of the earliest stages of cloaca patterning and morphogenesis. Here we compared human and mouse cloaca development and retrospectively identified that early mis-patterning of the embryonic cloaca might underlie the most severe forms of anorectal malformation in humans. In mouse, we identified that defective sonic hedgehog (Shh) signaling results in early dorsal-ventral epithelial abnormalities prior to the reported defects in septation. This is manifested by the absence of Sox2 and aberrant expression of keratins in the embryonic cloaca of Shh knockout mice. Shh knockout embryos additionally develop a hypervascular stroma, which is defective in BMP signaling. These epithelial and stromal defects persist later, creating an indeterminate epithelium with molecular alterations in the common channel. We then used these animals to perform a broad comparison with patients with mild-to-severe forms of anorectal malformations including cloaca malformation. We found striking parallels with the Shh mouse model, including nearly identical defective molecular identity of the epithelium and surrounding stroma. Our work strongly suggests that early embryonic cloacal epithelial differentiation defects might be the underlying cause of severe forms of anorectal malformations in humans. Moreover, deranged Shh and BMP signaling is correlated with severe anorectal malformations in both mouse and humans.
机译:肛门直肠畸形是先天性异常,形成一系列疾病,从最良性的类型,具有良好的功能预后,再到非常复杂的疾病,例如女​​性的泄殖腔畸形,其中直肠,阴道和尿道无法单独发育,而是通过单个引流常见的会阴通道。该表型的严重性表明,该缺陷发生在泄殖腔衍生器官的胚胎发育早期。由于无法直接调查人类胚胎泄殖腔的发育,目前的研究依赖于肛门直肠畸形的小鼠模型的使用。然而,即使对小鼠胚胎的研究也缺乏对泄殖腔图案形成和形态发生的最早阶段的分析。在这里,我们比较了人类和小鼠泄殖腔的发育情况,并回顾性地发现,胚胎泄殖腔的早期错误排列可能是人类肛门直肠畸形最严重的原因。在小鼠中,我们发现缺陷的声波刺猬(Shh)信号导致早期背-腹上皮异常,之前报道的分隔缺陷。这由Shh基因敲除小鼠的胚胎泄殖腔中Sox2的缺失和角蛋白的异常表达所证实。 Shh基因敲除胚胎还发展成血管过多基质,在BMP信号传导方面存在缺陷。这些上皮和间质缺损会持续存在,形成不确定的上皮,在公共通道中分子发生改变。然后,我们使用这些动物对患有轻度至重度肛门直肠畸形(包括泄殖腔畸形)的患者进行了广泛的比较。我们发现与Shh小鼠模型惊人的相似之处,包括上皮和周围基质的几乎相同的缺陷分子同一性。我们的工作强烈表明,早期的胚胎泄殖腔上皮细胞分化缺陷可能是人类严重肛门直肠畸形的根本原因。此外,Shh和BMP信号异常与小鼠和人类的严重肛门直肠畸形有关。

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