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首页> 外文期刊>Tissue engineering, Part A >Gene-modified mesenchymal stem cells express functionally active nerve growth factor on an engineered poly lactic glycolic acid (PLGA) substrate
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Gene-modified mesenchymal stem cells express functionally active nerve growth factor on an engineered poly lactic glycolic acid (PLGA) substrate

机译:基因修饰的间充质干细胞在工程化聚乳酸乙醇酸(PLGA)底物上表达功能活跃的神经生长因子

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Delivery of cellular and/or trophic factors to the site of injury may promote neural repair or regeneration and return of function after peripheral nerve or spinal cord injury. Engineered scaffolds provide a platform to deliver therapeutic cells and neurotrophic molecules. We have genetically engineered mesenchymal stem cells (MSCs) from the green rat (CZ-004 [SD TgN(act-EGFP)OsbCZ-004]) to express nerve growth factor (NGF) using an adenoviral vector. Cells maintained their stem cell phenotype as judged by expression of CD71 and CD172 markers, and absence of the hematopoietic marker CD45. Cells continued to express green fluorescent protein (GFP) on a long-term basis. Morphology, viability, and growth kinetics were maintained when cells were grown on a poly-lactic-co-glycolic acid (PLGA) polymer scaffold. Under appropriate growth conditions, they differentiated into chondrogenic, osteogenic, and adipogenic phenotypes, demonstrating that they retained their characteristics as MSCs. NGF was secreted from transduced MSCs at physiologically relevant levels (~25 ng/mL) measured by enzyme-linked immunoabsorbent assay (ELISA). Secreted NGF was functionally active in a neurite growth assay with PC12 cells. We conclude that MSCs are a good candidate for delivery of therapeutic factors into the injured nervous system. They are autologous, may be genetically modified to express neurotrophins, and are compatible with polymer surfaces that may be used as a potential delivery system.
机译:细胞和/或营养因子向损伤部位的递送可促进神经修复或周围神经或脊髓损伤后的再生和功能恢复。工程支架提供了一个平台,可输送治疗性细胞和神经营养分子。我们已经对来自绿色大鼠(CZ-004 [SD TgN(act-EGFP)OsbCZ-004])的间充质干细胞(MSC)进行了基因工程改造,以使用腺病毒载体表达神经生长因子(NGF)。通过CD71和CD172标志物的表达以及缺乏造血标志物CD45来判断,细胞保持了其干细胞表型。细胞长期持续表达绿色荧光蛋白(GFP)。当细胞在聚乳酸-乙醇酸共聚物(PLGA)聚合物支架上生长时,形态,活力和生长动力学得以维持。在适当的生长条件下,它们分化为软骨形成,成骨和成脂表型,表明它们保留了作为MSC的特征。通过酶联免疫吸附测定(ELISA)测定,NGF从转导的MSC中以生理相关水平(〜25 ng / mL)分泌。分泌的NGF在PC12细胞的神经突生长试验中具有功能活性。我们得出的结论是,MSC是将治疗因子输送到受伤的神经系统的良好候选者。它们是自体的,可以被基因修饰以表达神经营养蛋白,并且与可用作潜在递送系统的聚合物表面相容。

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