首页> 外文期刊>Journal of orthopaedic research >Gene-mediated osteogenic differentiation of stem cells by bone morphogenetic proteins-2 or -6.
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Gene-mediated osteogenic differentiation of stem cells by bone morphogenetic proteins-2 or -6.

机译:基因介导的骨形态发生蛋白2或-6对干细胞的成骨分化。

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Bone marrow-derived mesenchymal stem cells (BMDMSC) hold promise for targeted osteogenic differentiation and can be augmented by delivery of genes encoding bone morphogenetic proteins (BMP). The feasibility of promoting osteogenic differentiation of BMDMSC was investigated using two BMP genes in monolayer and three-dimensional alginate culture systems. Cultured BMDMSC were transduced with E1-deleted adenoviral vectors containing either human BMP2 or BMP6 coding sequence under cytomegalovirus (CMV) promoter control [17:1 multiplicities of infection (moi)] and either sustained in monolayer or suspended in 1 mL 1.2% alginate beads for 22 days. Adenovirus (Ad)-BMP-2 and Ad-BMP-6 transduction resulted in abundant BMP-2 and BMP-6 mRNA and protein expression in monolayer culture and BMP-2 protein expression in alginate cultures. Ad-BMP-2 and Ad-BMP-6 transduced BMDMSC in monolayer had earlier and robust alkaline phosphatase-positive staining and mineralization and were sustained for a longer duration with better morphology scores than untransduced or Ad-beta-galactosidase-transduced cells. Ad-BMP-2- and, to a lesser degree, Ad-BMP-6-transduced BMDMSC suspended in alginate demonstrated greater mineralization than untransduced cells. Gene expression studies at day 2 confirmed an inflammatory response to the gene delivery process with upregulation of interleukin 8 and CXCL2. Upregulation of genes consistent with response to BMP exposure and osteogenic differentiation, specifically endochondral ossification and extracellular matrix proteins, occurred in BMP-transduced cells. These data support that transduction of BMDMSC with Ad-BMP-2 or Ad-BMP-6 can accelerate osteogenic differentiation and mineralization of stem cells in culture, including in three-dimensional culture. BMP-2-transduced stem cells suspended in alginate culture may be a practical carrier system to support bone formation in vivo. BMP-6 induced a less robust cellular response than BMP-2, particularly in alginate culture. Inc.
机译:骨髓来源的间充质干细胞(BMDMSC)具有定向成骨分化的希望,并且可以通过传递编码骨形态发生蛋白(BMP)的基因来增强。使用两个BMP基因在单层和三维藻酸盐培养系统中研究了促进BMDMSC成骨分化的可行性。在巨细胞病毒(CMV)启动子控制下,用含有人BMP2或BMP6编码序列的E1缺失的腺病毒载体转导培养的BMDMSC [17:1感染复数(moi)],并单层维持或悬浮于1 mL 1.2%海藻酸盐珠持续22天。腺病毒(Ad)-BMP-2和Ad-BMP-6的转导在单层培养物中产生了丰富的BMP-2和BMP-6 mRNA和蛋白表达,在藻酸盐培养物中产生了BMP-2蛋白表达。单层中Ad-BMP-2和Ad-BMP-6转导的BMDMSC具有较早且稳定的碱性磷酸酶阳性染色和矿化作用,并且与未转导的或Ad-β-半乳糖苷酶转导的细胞相比,具有更长的持续时间,且形态学得分更高。悬浮在藻酸盐中的Ad-BMP-2-和较小程度的Ad-BMP-6转导的BMDMSC比未转导的细胞具有更大的矿化作用。第2天的基因表达研究证实,白介素8和CXCL2上调对基因传递过程有炎症反应。在BMP转导的细胞中发生了与BMP暴露和成骨分化反应一致的基因上调,特别是软骨内骨化和细胞外基质蛋白。这些数据支持用Ad-BMP-2或Ad-BMP-6转导BMDMSC可以加速培养中(包括三维培养中)干细胞的成骨分化和矿化作用。悬浮在藻酸盐培养物中的BMP-2转导的干细胞可能是支持体内骨骼形成的实用载体系统。 BMP-6诱导的细胞应答较BMP-2弱,特别是在藻酸盐培养中。公司

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