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首页> 外文期刊>Cellular Physiology and Biochemistry >Notch Signaling Augments BMP9-Induced Bone Formation by Promoting the Osteogenesis-Angiogenesis Coupling Process in Mesenchymal Stem Cells (MSCs)
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Notch Signaling Augments BMP9-Induced Bone Formation by Promoting the Osteogenesis-Angiogenesis Coupling Process in Mesenchymal Stem Cells (MSCs)

机译:Notch信号通过促进间充质干细胞(MSCs)的成骨-血管生成偶联过程增强BMP9诱导的骨形成。

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摘要

>Background/Aims: Mesenchymal stem cells (MSCs) are multipotent progenitors that can differentiate into several lineages including bone. Successful bone formation requires osteogenesis and angiogenesis coupling of MSCs. Here, we investigate if simultaneous activation of BMP9 and Notch signaling yields effective osteogenesis-angiogenesis coupling in MSCs. Methods: Recently-characterized immortalized mouse adipose-derived progenitors (iMADs) were used as MSC source. Transgenes BMP9, NICD and dnNotch1 were expressed by adenoviral vectors. Gene expression was determined by qPCR and immunohistochem??stry. Osteogenic activity was assessed by in vitro assays and in vivo ectopic bone formation model. Results: BMP9 upregulated expression of Notch receptors and ligands in iMADs. Constitutively-active form of Notch1 NICD1 enhanced BMP9-induced osteogenic differentiation both in vitro and in vivo, which was effectively inhibited by dominant-negative form of Notch1 dnNotch1. BMP9- and NICD1-transduced MSCs implanted with a biocompatible scaffold yielded highly mature bone with extensive vascularization. NICD1 enhanced BMP9-induced expression of key angiogenic regulators in iMADs and Vegfa in ectopic bone, which was blunted by dnNotch1. Conclusion: Notch signaling may play an important role in BMP9-induced osteogenesis and angiogenesis. Ita€?s conceivable that simultaneous activation of the BMP9 and Notch pathways should efficiently couple osteogenesis and angiogenesis of MSCs for successful bone tissue engineering.
机译:> 背景/目标: 间充质干细胞(MSC)是多能祖细胞,可以分化为包括骨骼在内的多个谱系。成功的骨形成需要MSC的成骨和血管生成耦合。在这里,我们调查是否同时激活BMP9和Notch信号产生有效的成骨-血管生成耦合在MSCs。 方法: 使用最近鉴定的永生化小鼠脂肪来源祖细胞(iMAD)作为MSC来源。转基因BMP9,NICD和dnNotch1由腺病毒载体表达。通过qPCR和免疫组织化学法测定基因表达。通过体外分析和体内异位骨形成模型评估成骨活性。 结果: BMP9上调了iMAD中Notch受体和配体的表达。 Notch1 NICD1的本构活性形式在体外和体内均增强了BMP9诱导的成骨分化,而Notch1 dnNotch1的显性阴性形式可有效地抑制它。植入了生物相容性支架的BMP9和NICD1转导的MSC可产生高度成熟的骨骼,并具有广泛的血管生成。 NICD1增强了BMP9诱导的异位骨中iMAD和Vegfa中关键血管生成调节剂的表达,这被dnNotch1削弱了。 结论: Notch信号可能在BMP9诱导的成骨和血管生成中起重要作用。可以想象,BMP9和Notch通路的同时激活应有效地结合MSC的成骨和血管生成,以成功进行骨组织工程。

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