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首页> 外文期刊>Biomaterials >Critical-size calvarial bone defects healing in a mouse model with silk scaffolds and SATB2-modified iPSCs.
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Critical-size calvarial bone defects healing in a mouse model with silk scaffolds and SATB2-modified iPSCs.

机译:在具有丝支架和SATB2修饰的iPSC的小鼠模型中,临界大小的颅骨缺损愈合。

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摘要

Induced pluripotent stem cells (iPSCs) can differentiate into mineralizing cells and thus have a great potential in application in engineered bone substitutes with bioactive scaffolds in regeneration medicine. In the current study we characterized and demonstrated the pluripotency and osteogenic differentiation of mouse iPSCs. To enhance the osteogenic differentiation of iPSCs, we then transduced the iPSCs with the potent transcription factor, nuclear matrix protein SATB2. We observed that in SATB2-overexpressing iPSCs there were increased mineral nodule formation and elevated mRNA levels of key osteogenic genes, osterix (OSX), Runx2, bone sialoprotein (BSP) and osteocalcin (OCN). Moreover, the mRNA levels of HoxA2 was reduced after SATB2 overexpression in iPSCs. The SATB2-overexpressing iPSCs were then combined with silk scaffolds and transplanted into critical-size calvarial bone defects created in nude mice. Five weeks post-surgery, radiological and micro-CT analysis revealed enhanced new bone formation in calvarial defects in SATB2 group. Histological analysis also showed increased new bone formation and mineralization in the SATB2 group. In conclusion, the results demonstrate that SATB2 facilitates the differentiation of iPSCs towards osteoblast-lineage cells by repressing HoxA2 and augmenting the functions of the osteoblast determinants Runx2, BSP and OCN.
机译:诱导多能干细胞(iPSC)可以分化为矿化细胞,因此在再生医学中具有生物活性支架的工程骨替代物中具有巨大的应用潜力。在本研究中,我们表征并证明了小鼠iPSC的全能性和成骨分化。为了增强iPSC的成骨分化,我们然后用有效的转录因子核基质蛋白SATB2转导了iPSC。我们观察到在过表达SATB2的iPSC中,矿物质结节形成增加,关键成骨基因,osterix(OSX),Runx2,骨唾液蛋白(BSP)和骨钙蛋白(OCN)的mRNA水平升高。此外,在iPSC中SATB2过表达后HoxA2的mRNA水平降低。然后将SATB2过表达的iPSC与丝支架结合,并移植到在裸鼠中产生的临界大小的颅骨缺损中。手术后五周,放射学和显微CT分析显示,SATB2组颅骨缺损中新骨形成增强。组织学分析还显示,SATB2组的新骨形成和矿化增加。总之,结果表明,SATB2通过抑制HoxA2并增强成骨细胞决定簇Runx2,BSP和OCN的功能,促进iPSC向成骨细胞谱系的分化。

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