E-Cadherin和FGFR1在常压培养小鼠成骨细胞形成中的表达。

Osama Al-Amer
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摘要

e -钙粘蛋白是一种细胞表面粘附分子,在组织分化中起重要作用。FGFR1在发育和成熟的骨骼中以独特和冗余的功能表达。E-cadherin和FGFR1在成骨细胞形成过程中的表达水平尚不清楚。在成骨培养基中,将原代颅骨小鼠成骨细胞分化为成熟成骨细胞。本研究分析了成骨培养原代小鼠成骨细胞碱性磷酸酶(ALP)活性、茜素红染色、基因表达(runt相关转录因子2 (Runx2)、胶原蛋白1 (COL1A2)、骨钙素、E-cadherin和FGFR1)以及蛋白表达(E-cadherin和FGFR1)。成骨过程中,ALP活性、茜素红染色、Runx2 mRNA和COL1A2 mRNA的相对表达量均显著升高,可显著提高原代成骨细胞的成骨能力。结果表明,E-cadherin mRNA和蛋白在未成熟成骨细胞(第7天)中表达,而在成熟成骨细胞(第28天)中不表达。相比之下,FGFR1 mRNA和蛋白在成熟成骨细胞(第28天)中的表达明显高于未成熟成骨细胞(第7天)。总之,本研究表明,E-cadherin可以作为未成熟成骨细胞的标记物,而FGFR1可以作为体外成骨过程中成熟成骨细胞的标记物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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E-Cadherin and FGFR1 Expression in Mouse Osteoblastogenesis in Normoxic Cultures.

E-cadherin is a cell surface adhesion molecules that play an important role in tissue differentiation. FGFR1 is expressed in the developing and mature skeleton in patterns suggestive of both unique and redundant function. Expression levels of E-cadherin and FGFR1 during osteoblastogenesis unclear. In this study primary calvarial mouse osteoblasts were differentiated to mature osteoblasts in osteogenic medium. Alkaline phosphatase (ALP) activity, alizarin red staining, gene expression (Runt-related transcription factor 2 (Runx2), collagen 1 (COL1A2), osteocalcin, E-cadherin and FGFR1) and protein expression (E-cadherin and FGFR1) of osteogenic-cultured primary mouse osteoblast were analysed in this study. The osteogenesis capacity of primary osteoblasts was significantly promoted as ALP activity, alizarin red staining, and the relative expression of Runx2 mRNA and COL1A2 mRNA significantly increased during osteoblastogenesis. The results demonstrated that E-cadherin mRNA and protein were expressed in immature osteoblasts (day 7), but not in mature osteoblasts (day 28). In contrast, the expression of FGFR1 mRNA and protein significantly highly expressed in mature osteoblasts (day 28) compared with immature osteoblasts (day 7). In conclusion, this study demonstrated that E-cadherin could be used as a marker for immature osteoblasts, whereas FGFR1 could be used as a marker for mature osteoblasts during in vitro osteoblastogenesis.

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