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Surface-mediated functional gene delivery: An effective strategy for enhancing competitiveness of endothelial cells over smooth muscle cells

机译:表面介导的功能基因传递:增强内皮细胞比平滑肌细胞竞争力的有效策略

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The non-biorecognition of general biomaterials and inherent biospecificity of biological systems pose key challenges to the optimal functions of medical devices. In this study, we constructed the surface-mediated functional gene delivery through layer-by-layer self-assembly of protamine sulfate (PrS) and plasmid DNA encoding hepatocyte growth factor (HGF), aiming at specific enhancing endothelial cells (EC) compeititiveness over smooth muscle cells (SMC). Characterizations of the (PrS/HGF-pDNA) multilayered films present the linear buildup with homogeneous and flat topographical feature. The amount of DNA can be easily controlled. By using these multilayered films, both human umbilical vein endothelial cells (HUVEC) and human umbilical artery smooth muscle cells (HUASMC) can be directly transfected when they contact with the multilayered films. On transfection, increasing secretion of HGF has been detected in both HUVEC and HUASMC culture, which leads to selective promotion of HUVEC proliferation. In the co-culture experiment, we also exhibit the promoted and hindered growth of HUVEC and HUASMC, respectively, which could be attributed to the inverse influence of HUVEC on HUASMC. These results collectively demonstrate that our system can be served as a powerful tool for enhancing competitiveness of EC over SMC, which opens perspectives for the regulation of intercellular competitiveness in the field of interventional therapy. ? 2013 Elsevier Ltd.
机译:普通生物材料的非生物识别和生物系统固有的生物特异性对医疗器械的最佳功能提出了关键挑战。在这项研究中,我们通过硫酸鱼精蛋白(PrS)和编码肝细胞生长因子(HGF)的质粒DNA的逐层自组装构建了表面介导的功能基因传递,目的是通过特定的增强内皮细胞(EC)竞争能力平滑肌细胞(SMC)。 (PrS / HGF-pDNA)多层膜的表征呈现出线性堆积,具有均匀且平坦的形貌特征。 DNA的量可以很容易地控制。通过使用这些多层膜,当它们与多层膜接触时,人脐静脉内皮细胞(HUVEC)和人脐动脉平滑肌细胞(HUASMC)都可以被直接转染。转染时,在HUVEC和HUASMC培养物中均检测到HGF分泌增加,从而导致选择性促进HUVEC增殖。在共培养实验中,我们还分别显示了HUVEC和HUASMC的促进和受抑制的生长,这可能归因于HUVEC对HUASMC的反作用。这些结果共同证明,我们的系统可以作为增强EC相对于SMC的竞争力的有力工具,这为介入治疗领域中细胞间竞争性的调控开辟了前景。 ? 2013爱思唯尔有限公司

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