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首页> 外文期刊>International Journal of Clinical and Experimental Pathology >Spatiotemporal expression of Wnt5a during the development of the striated muscle complex in rats with anorectal malformations
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Spatiotemporal expression of Wnt5a during the development of the striated muscle complex in rats with anorectal malformations

机译:Wnt5a在肛肠畸形大鼠横纹肌复合体发育过程中的时空表达

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Fecal incontinence and constipation after procedures for anorectal malformations (ARMs) are closely related to the maldevelopment of the striated muscle complex (SMC). Previous studies have demonstrated that myogenic regulatory factors (MRFs) play a significant role in muscle development. Wnt signal pathway is extremely important for MRFs regulation. This study was designed to investigate the spatiotemporal expression pattern of Wnt5a in SMC in ARMs rat embryos. Materials and Methods: Anorectal malformation embryos were induced by ethylene thiourea on embryonic day 10 (E10). Expression levels of protein and mRNA of Wnt5a were confirmed by immunohistochemistry staining, western blot and quantitative real-time PCR (qRT-PCR) between normal rat embryos and embryos with ARMs. Results: Immunostaining revealed that, on embryonic day 17 (E17), the Wnt5a protein was initially expressed in the SMC in normal embryos. With the growth of pregnancy, the positive staining cells gradually increased. The same time-dependent changes of Wnt5a protein were detected in ARMs embryos. Besides, immunostaining showed that Wnt5a had a significant increase in normal embryos compared with ARMs embryos. Similarly, in Western blot and qRT-PCR, the higher expression of Wnt5a protein and mRNA were remarkable in normal embryos during the SMC development, relatively. Conclusion: Our study demonstrated that the downregulation of Wnt5a at the time of SMC development might partly be related to the dysplasia of SMC in ARMs.
机译:肛肠畸形(ARMs)手术后的大便失禁和便秘与横纹肌复合体(SMC)的发育不良密切相关。先前的研究表明,肌源性调节因子(MRF)在肌肉发育中起重要作用。 Wnt信号通路对于MRF调节极为重要。本研究旨在研究Wnt5a在SMCs中ARMs大鼠胚胎中的时空表达模式。材料与方法:在第10天(E10),乙烯硫脲诱导肛门直肠畸形的胚胎。通过免疫组织化学染色,western印迹和定量实时PCR(qRT-PCR)证实正常大鼠胚胎和带ARM的胚胎之间Wnt5a的蛋白和mRNA的表达水平。结果:免疫染色显示,在胚胎第17天(E17),Wnt5a蛋白最初在正常胚胎的SMC中表达。随着妊娠的增长,阳性染色细胞逐渐增多。在ARMs胚胎中检测到相同的Wnt5a蛋白随时间变化。此外,免疫染色表明,与ARMs胚胎相比,Wnt5a在正常胚胎中有显着增加。同样,在Western印迹和qRT-PCR中,相对而言,SMC发育过程中Wnt5a蛋白和mRNA在正常胚胎中的表达较高。结论:我们的研究表明,SMC发育时Wnt5a的下调可能部分与ARM中SMC的异常增生有关。

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