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Gene-activated matrix harboring a miR20a-expressing plasmid promotes rat cranial bone augmentation

机译:含有miR20A的基因活化基质表达乳腺素的质粒促进大鼠颅骨增强

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摘要

Gene-activated matrix (GAM) has a potential usefulness in bone engineering as an alternate strategy for the lasting release of osteogenic proteins but efficient methods to generate non-viral GAM remain to be established. In this study, we investigated whether an atelocollagen-based GAM containing naked-plasmid (p) DNAs encoding microRNA (miR) 20a, which may promote osteogenesis in vivo via multiple pathways associated with the osteogenic differentiation of mesenchymal stem/progenitor cells (MSCs), facilitates rat cranial bone augmentation. First, we confirmed the osteoblastic differentiation functions of generated pDNA encoding miR20a (pmiR20a) in vitro, and its transfection regulated the expression of several of target genes, such as Bambi1 and PPARγ, in rat bone marrow MSCs and induced the increased expression of BMP4. Then, when GAMs fabricated by mixing 100 μl of 2% bovine atelocollagen, 20 mg β-TCP granules and 0.5 mg (3.3 μg/μl) AcGFP plasmid-vectors encoding miR20a were transplanted to rat cranial bone surface, the promoted vertical bone augmentation was clearly recognized up to 8 weeks after transplantation, as were upregulation of VEGFs and BMP4 expressions at the early stages of transplantation. Thus, GAM-based miR delivery may provide an alternative non-viral approach by improving transgene efficacy via a small sequence that can regulate the multiple pathways.
机译:基因激活的基质(GAM)在骨骼工程中具有潜在的有用性,作为持续释放成骨蛋白的替代策略,但仍有有效的方法来建立产生非病毒GAM的方法。在本研究中,我们研究了含有基于ATELOCOLGAGEN的GAM含有裸体质粒(P)DNA的GAM,它们可以通过与间充质茎/祖细胞(MSCs)的成骨分化相关的多种途径促进体内骨质发生,促进大鼠颅骨增强。首先,我们确认了在体外编码MiR20A(PMIR20A)的生成PDNA的骨细胞分化功能,其转染在大鼠骨髓MSC中调节了几种靶基因,例如Bambi1和PPARγ的表达,并诱导了BMP4的表达增加。然后,当通过混合100μl2%牛Etelocollagen而制造的Gam,将20mgβ-TCP颗粒和0.5mg(3.3μg/μl)移植到大鼠颅骨表面上,促进的垂直骨增强是在移植后明确识别出现8周,正如移植早期阶段的VEGFS和BMP4表达的上调。因此,基于GAM的MIR递送可以通过通过可以调节多个途径的小序列改善转基因效果来提供替代的非病毒方法。

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