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The effect of controlled release of PDGF-BB from heparin-conjugated electrospun PCL/gelatin scaffolds on cellular bioactivity and infiltration

机译:PDGF-BB从肝素偶联的电纺PCL /明胶支架中受控释放对细胞生物活性和浸润的影响

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Heparin-conjugated electrospun poly(ε-caprolactone) (PCL)/gelatin scaffolds were developed to provide controlled release of platelet-derived growth factor-BB (PDGF-BB) and allow prolonged bioactivity of this molecule. A mixture of PCL and gelatin was electrospun into three different morphologies. Next, heparin molecules were conjugated to the reactive surface of the scaffolds. This heparin-conjugated scaffold allowed the immobilization of PDGF-BB via electrostatic interaction. In vitro PDGF-BB release profiles indicated that passive physical adsorption of PDGF-BB to non-heparinized scaffolds resulted in an initial burst release of PDGF-BB within 5 days, which then leveled off. However, electrostatic interaction between PDGF-BB and the heparin-conjugated scaffolds gave rise to a sustained release of PDGF-BB over the course of 20 days without an initial burst. Moreover, PDGF-BB that was strongly bound to the heparin-conjugated scaffolds enhanced smooth muscle cell (SMC) proliferation. In addition, scaffolds composed of 3.0 μm diameter fibers that were immobilized with PDGF-BB accelerated SMC infiltration into the scaffold when compared to scaffolds composed of smaller diameter fibers or scaffolds that did not release PDGF-BB. We concluded that the combination of the large pore structure in the scaffolds and the heparin-mediated delivery of PDGF-BB provided the most effective cellular interactions through synergistic physical and chemical cues.
机译:肝素结合的电纺聚(ε-己内酯)(PCL)/明胶支架被开发出来,以提供血小板源性生长因子-BB(PDGF-BB)的受控释放并延长该分子的生物活性。将PCL和明胶的混合物电纺成三种不同的形态。接下来,将肝素分子缀合至支架的反应性表面。该肝素结合的支架允许通过静电相互作用固定PDGF-BB。体外PDGF-BB释放曲线表明,PDGF-BB在非肝素化支架上的被动物理吸附导致PDGF-BB在5天内初始爆发释放,然后趋于平稳。然而,PDGF-BB与肝素结合的支架之间的静电相互作用导致PDGF-BB在20天的过程中持续释放,而没有最初的爆发。而且,PDGF-BB与肝素结合的支架牢固结合,可增强平滑肌细胞(SMC)的增殖。另外,与由较小直径的纤维或不释放PDGF-BB的支架组成的支架相比,由直径为3.0μm的纤维组成的支架被PDGF-BB固定,加速了SMC向支架的渗透。我们得出的结论是,支架中的大孔结构与肝素介导的PDGF-BB的传递通过协同的物理和化学提示提供了最有效的细胞相互作用。

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