首页> 外文期刊>Biomaterials >Local gene delivery from ECM-coated poly(lactide-co-glycolide) multiple channel bridges after spinal cord injury.
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Local gene delivery from ECM-coated poly(lactide-co-glycolide) multiple channel bridges after spinal cord injury.

机译:脊髓损伤后从ECM涂层的聚(丙交酯-乙交酯)多通道桥的局部基因传递。

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摘要

Tissue engineering scaffolds with complex geometries can provide an architecture that directs tissue formation. Drug delivery from these scaffolds to promote regeneration is often challenging due to the complex fabrication processes. Surface-mediated DNA delivery from multiple channel bridges was applied to deliver lipoplexes in vivo to the injured spinal cord. The surface properties of the polymer, DNA deposition with or without drying, and the presence of ECM components were investigated. In vitro studies revealed that fibronectin produced greater expression levels and immobilization efficiencies compared with collagen, laminin, and no coating. In addition, lipoplex incubation on ECM-coated PLG increased expression relative to either of the drying methods. Additionally, the incubation method had more homogeneously distributed lipoplexes and a higher number of transfected cells relative to the dried conditions. Translation to three-dimensional bridges led to high levels of transgene expression in vitro. In vivo, lipoplexes immobilized to the bridge produced transgene expression levels in a rat spinal cord hemisection model that were 2-fold greater than naked plasmid. Additionally, expression with lipoplexes persisted for at least three weeks. Surface-mediated delivery can be applied to scaffolds with complex geometries to promote transgene expression in vivo.
机译:具有复杂几何形状的组织工程支架可以提供指导组织形成的架构。由于复杂的制造过程,从这些支架中递送药物以促进再生通常具有挑战性。来自多个通道桥的表面介导的DNA传递被应用于体内脂质体传递到受伤的脊髓。研究了聚合物的表面性质,干燥或不干燥情况下的DNA沉积以及ECM成分的存在。体外研究表明,与胶原蛋白,层粘连蛋白和无涂层相比,纤连蛋白产生更高的表达水平和固定效率。另外,相对于任一种干燥方法,脂质体在ECM包被的PLG上的孵育均增加了表达。另外,相对于干燥条件,温育方法具有更均匀分布的脂质复合物和更高数量的转染细胞。翻译成三维桥导致体外高水平的转基因表达。在体内,固定在桥上的脂质复合物在大鼠脊髓半切模型中产生的转基因表达水平是裸质粒的2倍。另外,脂质体的表达持续至少三周。可以将表面介导的递送应用于具有复杂几何形状的支架以促进体内转基因表达。

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