首页> 外文期刊>Italian Journal of Anatomy and Embryology >Molecular and functional characterization of calvarial stem cells in nonsyndromic craniosynostosis: role of the primary cilium-related signaling in the abnormal osteogenic niche
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Molecular and functional characterization of calvarial stem cells in nonsyndromic craniosynostosis: role of the primary cilium-related signaling in the abnormal osteogenic niche

机译:颅骨干细胞在非综合征性颅前突中的分子和功能表征:纤毛相关的初级纤毛相关信号的作用

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Nonsyndromic craniosynostosis (NSC) is a congenital malformation due to the premature ossification of calvarial sutures, representing a paradigm of aberrant osteogenesis, with an unclear multifactorial etiopathogenesis. Through comparative analyses of fused-versus-patent sutures of affected patients, we demonstrated that calvarial stem cells (CSCs) display a constitutively overactive osteogenic potential at the site of premature synostosis, driven by the activation of intracellular osteogenic pathways. Microarray profiling allowed evidencing the significant differential expression of genes involved in the structure and function of the primary cilium, a key sensing organelle involved in cell differentiation and development. Indeed, the Bardet Biedl Syndrome-associated gene 9 (BBS9), encoding a structural component of the primary cilium, has been associated to the NSC phenotype in a recent GWAS. The expression of BBS9 appeared to be increased in CSCs from fused- versus unfused-sutures; moreover, confocal microscopy indicated that BBS9 expression in fused suture-CSCs tended to be scattered within the cytoplasm rather than localized at the transition zone of the primary cilium, as in control cells, indicating a reduced cell polarization. We performed in vitro gene silencing, co-culture assays and in vivo expression analysis in the rat calvarium, to confirm the role of BBS9 and related signaling in the osteogenic differentiation of CSCs and in the ossification of calvarial sutures. Overall our original data point towards the identification of the primary cilium as a key player involved in the abnormal communication of calvarial stem cells with surrounding cells and extracellular matrix within the abnormal osteogenic niche orchestrating the NSC phenotype.
机译:由于颅骨缝线过早骨化,非综合征性颅骨前突合并症(NSC)是一种先天性畸形,代表了异常的成骨模式,尚不清楚多因素的病因。通过对受影响患者的融合缝线与专利缝线进行比较分析,我们证明颅骨干细胞(CSCs)在早产的骨突形成部位表现出组成性过度活跃的成骨潜能,这是由细胞内成骨途径的激活驱动的。微阵列分析可以证明参与初级纤毛的结构和功能的基因的显着差异表达,初级纤毛是参与细胞分化和发育的关键传感细胞。实际上,在最近的GWAS中,编码初级纤毛结构成分的Bardet Biedl综合征相关基因9(BBS9)已与NSC表型相关。 BSC9的表达似乎在CSCs中从融合缝合线到未融合缝合线增加。此外,共聚焦显微镜检查表明,融合缝合线-CSCs中的BBS9表达倾向于分散在细胞质内,而不是像对照细胞一样位于初级纤毛的过渡区,这表明细胞极化减少。我们在大鼠颅骨中进行了体外基因沉默,共培养测定和体内表达分析,以确认BBS9和相关信号在CSC成骨分化和颅骨缝线骨化中的作用。总的来说,我们的原始数据指向将初级纤毛鉴定为参与颅骨干细胞与周围的细胞以及异常的成骨小生境中的NSC表型异常交流的关键参与者。

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