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Conditional mutation of fibroblast growth factor receptors 1 and 2 results in an omphalocele in mice associated with disruptions in ventral body wall muscle formation.

机译:成纤维细胞生长因子受体1和2的条件突变导致小鼠腹侧膨出,与腹侧体壁肌肉形成破坏相关。

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摘要

BACKGROUND/PURPOSE: We observed that fibroblast growth factor receptors 1 and 2 (Fgfr1, Fgfr2) are expressed during abdominal wall development in mice and hypothesized that conditional mutation of these genes would result in abdominal wall defects. METHODS: Section in situ hybridizations were performed for Fgfr1 and Fgfr2 on wild-type embryos at embryonic day (E) 11.5 and E13.5. Conditional mutation of Fgfr1and Fgfr2 was achieved with a tamoxifen inducible Cre at E8.5. Litters were harvested at E17.5, whole mount photographs were taken, and paraffin sections were generated and stained with hematoxylin and eosin. RESULTS: Fgfr1 was expressed in ectoderm, lateral plate mesoderm, and myoblasts, whereas Fgfr2 was expressed almost exclusively in the early dermis and ectoderm of the abdominal wall. Conditional mutation of both Fgfr2 alleles and one Fgfr1 allele resulted in omphalocele in 38.7% of mutants. Histologic examination in mutants demonstrated disruptions in dermal and muscle development. CONCLUSIONS: Mutant embryos with omphalocele arising from mutation in Fgfr1 and Fgfr2 exhibit disruptions in the development of the secondary abdominal wall structures. These findings are consistent with a model of ventral abdominal wall development in which organization of the muscles and connective tissue (secondary abdominal wall structures) is influenced by positional information emanating from the primary abdominal wall.
机译:背景/目的:我们观察到成纤维细胞生长因子受体1和2(Fgfr1,Fgfr2)在小鼠腹壁发育过程中表达,并假设这些基因的条件突变会导致腹壁缺损。方法:在胚胎第(E)11.5和E13.5日对野生型胚胎的Fgfr1和Fgfr2进行切片原位杂交。 Fgfr1和Fgfr2的条件突变是由他莫昔芬诱导的Cre在E8.5处实现的。在E17.5收集凋落物,拍摄整张照片,生成石蜡切片,并用苏木精和曙红染色。结果:Fgfr1在外胚层,外侧板中胚层和成肌细胞中表达,而Fgfr2几乎仅在腹壁的早期真皮和外胚层中表达。 Fgfr2等位基因和一个Fgfr1等位基因的条件突变导致38.7%的突变体发生了食管膨出。突变体的组织学检查显示真皮和肌肉发育受到破坏。结论:Fgfr1和Fgfr2突变引起的具有卵泡膨大的突变胚胎在次级腹壁结构的发育中表现出破坏。这些发现与腹腹壁发育模型相一致,在腹壁腹膜发育中,肌肉和结缔组织(次级腹壁结构)的组织受到初级腹壁发出的位置信息的影响。

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