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Novel polypyrrole-coated polylactide scaffolds enhance adipose stem cell proliferation and early osteogenic differentiation

机译:新型聚吡咯涂层的聚乳酸支架可增强脂肪干细胞的增殖和早期成骨分化

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摘要

An electrically conductive polypyrrole (PPy) doped with a bioactive agent is an emerging functional biomaterial for tissue engineering. We therefore used chondroitin sulfate (CS)-doped PPy coating to modify initially electrically insulating polylactide resulting in novel osteogenic scaffolds. In situ chemical oxidative polymerization was used to obtain electrically conductive PPy coating on poly-96L/4D-lactide (PLA) nonwoven scaffolds. The coated scaffolds were characterized and their electrical conductivity was evaluated in hydrolysis. The ability of the coated and conductive scaffolds to enhance proliferation and osteogenic differentiation of human adipose stem cells (hASCs) under electrical stimulation (ES) in three-dimensional (3D) geometry was compared to the noncoated PLA scaffolds. Electrical conductivity of PPy-coated PLA scaffolds (PLA-PPy) was evident at the beginning of hydrolysis, but decreased during the first week of incubation due to de-doping. PLA-PPy scaffolds enhanced hASC proliferation significantly compared to the plain PLA scaffolds at 7 and 14 days. Furthermore, the alkaline phosphatase (ALP) activity of the hASCs was generally higher in PLA-PPy seeded scaffolds, but due to patient variation, no statistical significance could be determined. ES did not have a significant effect on hASCs. This study highlights the potential of novel PPy-coated PLA scaffolds in bone tissue engineering. ?
机译:掺杂有生物活性剂的导电聚吡咯(PPy)是一种用于组织工程的新兴功能性生物材料。因此,我们使用硫酸软骨素(CS)掺杂的PPy涂层来修饰最初的电绝缘聚交酯,从而产生新型的成骨支架。原位化学氧化聚合用于在聚96L / 4D-丙交酯(PLA)非织造支架上获得导电PPy涂层。表征涂覆的支架,并在水解中评估其电导率。与未涂覆的PLA支架相比,在电刺激(ES)的三维(3D)几何条件下,涂覆的和导电的支架增强人类脂肪干细胞(hASCs)增殖和成骨分化的能力进行了比较。在水解开始时,涂有PPy的PLA支架(PLA-PPy)的电导率很明显,但在孵育的第一周由于去掺杂而降低了电导率。与普通PLA支架相比,PLA-PPy支架在7天和14天时显着增强了hASC增殖。此外,hASCs的碱性磷酸酶(ALP)活性通常在PLA-PPy植入的支架中更高,但是由于患者的差异,无法确定统计学意义。 ES对hASC没有显着影响。这项研究突出了新型PPy涂层的PLA支架在骨组织工程中的潜力。 ?

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