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首页> 外文期刊>Tissue engineering, Part C. Methods >Stromal cell-derived factor-1alpha-directed chemoattraction of transiently CXCR4-overexpressing bone marrow stromal cells into functionalized three-dimensional biomimetic scaffolds.
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Stromal cell-derived factor-1alpha-directed chemoattraction of transiently CXCR4-overexpressing bone marrow stromal cells into functionalized three-dimensional biomimetic scaffolds.

机译:基质细胞衍生因子-1alpha指导的瞬时CXCR4过表达的骨髓基质细胞向功能化三维仿生支架的化学引力。

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Three-dimensional (3D) bone substitute material should not only serve as scaffold in large bone defects but also attract mesenchymal stem cells, a subset of bone marrow stromal cells (BMSCs) that are able to form new bone tissue. An additional crucial step is to attract BMSCs from the surface into deeper structures of 3D porous bone substitute scaffolds. Here we show that transient overexpression of CXCR4 in human BMSCs induced by mRNA transfection enhances stromal cell-derived factor-1alpha (SDF-1alpha)-directed chemotactic capacity to invade internal compartments of porous 3D bone substitute scaffolds in vitro and in vivo. In vitro native BMCSs invaded up to 500 mum into SDF-1alpha-releasing 3D scaffolds, whereas CXCR4-overexpressing BMSCs invaded up to 800 mum within 5 days. In addition, 60% downregulation of endogenous SDF-1 transcription in BMSCs by endoribonuclease-prepared siRNA before CXCR4 mRNA transfection enhanced SDF-1alpha-directed migration of human BMSCs by 50%. Implantation of SDF-1alpha-releasing scaffolds seeded with transiently CXCR4-overexpressing BMSCs resulted in an increase of invasion into internal compartments of the scaffolds in a mouse model. In vivo native BMCS invaded up to 250 mum into SDF-1alpha-releasing 3D scaffolds, whereas CXCR4-overexpressing BMSC invaded up to 500 mum within 5 days. Thus, the SDF-1alpha/CXCR4 chemoattraction system can be used to efficiently recruit BMSCs into SDF-1alpha-releasing 3D scaffolds in vitro and in vivo.
机译:三维(3D)骨替代材料不仅应充当大骨缺损的支架,而且还应吸引间充质干细胞,这是能够形成新的骨组织的骨髓基质细胞(BMSC)的子集。另一个关键步骤是将BMSC从表面吸引到3D多孔骨替代支架的更深结构中。在这里,我们显示了由mRNA转染诱导的人BMSC中CXCR4的瞬时过表达增强了基质细胞衍生的因子1α(SDF-1alpha)定向的趋化能力,在体内和体外侵入多孔3D骨替代支架的内部隔室。体外天然BMCS侵入SDF-1alpha释放3D支架的最大长度为500毫米,而过表达CXCR4的BMSC在5天内侵入了800毫米。此外,在CXCR4 mRNA转染之前,通过内切核糖核酸酶制备的siRNA在BMSC中内源性SDF-1转录的60%下调使人BMSC的SDF-1alpha定向迁移增加了50%。植入短暂表达CXCR4的BMSC植入的SDF-1alpha释放支架导致在小鼠模型中对支架内部腔室的侵袭增加。在体内,天然BMCS侵入SDF-1alpha释放3D支架的最大数量为250毫米,而过表达CXCR4的BMSC在5天内侵入了最大500毫米。因此,SDF-1alpha / CXCR4趋化系统可用于在体外和体内有效地将BMSC募集到释放SDF-1alpha的3D支架中。

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