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首页> 外文期刊>Fluids and Barriers of the CNS >Fgf2 is expressed in human and murine embryonic choroid plexus and affects choroid plexus epithelial cell behaviour
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Fgf2 is expressed in human and murine embryonic choroid plexus and affects choroid plexus epithelial cell behaviour

机译:Fgf2在人和鼠类胚胎脉络丛中表达,并影响脉络丛上皮细胞行为

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Background Although fibroblast growth factor (Fgf) signalling plays crucial roles in several developing and mature tissues, little information is currently available on expression of Fgf2 during early choroid plexus development and whether Fgf2 directly affects the behaviour of the choroid plexus epithelium (CPe). The purpose of this study was to investigate expression of Fgf2 in rodent and human developing CPe and possible function of Fgf2, using in vitro models. The application of Fgf2 to brain in vivo can affect the whole tissue, making it difficult to assess specific responses of the CPe. Methods Expression of Fgf2 was studied by immunohistochemistry in rodent and human embryonic choroid plexus. Effects of Fgf2 on growth, secretion, aggregation and gene expression was investigated using rodent CPe vesicles, a three-dimensional polarized culture model that closely mimics CPe properties in vivo, and rodent CPe monolayer cultures. Results Fgf2 was present early in development of the choroid plexus both in mouse and human, suggesting the importance of this ligand in Fgf signalling in the developing choroid plexus. Parallel analysis of Fgf2 expression and cell proliferation during CP development suggests that Fgf2 is not involved in CPe proliferation in vivo. Consistent with this observation is the failure of Fgf2 to increase proliferation in the tri-dimensional vesicle culture model. The CPe however, can respond to Fgf2 treatment, as the diameter of CPe vesicles is significantly increased by treatment with this growth factor. We show that this is due to an increase in cell aggregation during vesicle formation rather than increased secretion into the vesicle lumen. Finally, Fgf2 regulates expression of the CPe-associated transcription factors, Foxj1 and E2f5, whereas transthyretin, a marker of secretory activity, is not affected by Fgf2 treatment. Conclusion Fgf2 expression early in the development of both human and rodent choroid plexus, and its ability to modulate behaviour and gene expression in CPe, supports the view that Fgf signalling plays a role in the maintenance of integrity and function of this specialized epithelium, and that this role is conserved between rodents and humans.
机译:背景技术尽管成纤维细胞生长因子(Fgf)信号在一些发育中和成熟的组织中起着至关重要的作用,但是目前在脉络丛早期发育过程中Fgf2的表达以及Fgf2是否直接影响脉络丛上皮(CPe)的行为方面尚缺乏信息。这项研究的目的是使用体外模型研究Fgf2在啮齿动物和人类发育的CPe中的表达以及Fgf2的可能功能。 Fgf2在体内大脑中的应用会影响整个组织,因此难以评估CPe的特异性反应。方法采用免疫组织化学方法检测Fgf2在啮齿动物和人胚脉络丛中的表达。使用啮齿动物CPe囊泡,紧密模拟体内CPe特性的三维极化培养模型和啮齿动物CPe单层培养物研究了Fgf2对生长,分泌,聚集和基因表达的影响。结果Fgf2在小鼠和人的脉络丛的发育早期均存在,表明该配体在正在发育的脉络丛的Fgf信号传导中的重要性。在CP发育过程中对Fgf2表达和细胞增殖的平行分析表明,Fgf2在体内不参与CPe增殖。与此观察结果一致的是Fgf2在三维囊泡培养模型中未能增加增殖。然而,CPe可以对Fgf2处理产生反应,因为用这种生长因子进行治疗会大大增加CPe囊泡的直径。我们表明这是由于在囊泡形成过程中细胞聚集的增加,而不是由于分泌到囊泡腔中的分泌增加。最后,Fgf2调节与CPe相关的转录因子Foxj1和E2f5的表达,而甲状腺素分泌蛋白(一种分泌活性的标志)不受Fgf2处理的影响。结论Fgf2在人和啮齿动物脉络丛发育的早期表达,并具有调节CPe行为和基因表达的能力,支持以下观点:Fgf信号传导在维持该特殊上皮的完整性和功能中起作用,并且这种作用在啮齿动物和人类之间得以保留。

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