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Development of a Nanoparticle System for Controlled Release in Bioprinted Respiratory Scaffolds

机译:用于生物打印呼吸支架中控释的纳米颗粒系统的开发

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摘要

The use of nanoparticle systems for the controlled release of growth factors is a promising approach to mimicking of the biochemical environment of native tissues in tissue engineering. However, sustaining growth factor release inside an appropriate therapeutic window is a challenge, particularly in bioprinted scaffolds. In this study, a chitosan-coated alginate-based nanoparticle system loaded with hepatocyte growth factor was developed and then incorporated into bioprinted scaffolds. The release kinetics were investigated with a focus on identifying the impact of the chitosan coating and culture conditions. Our results demonstrated that the chitosan coating decreased the release rate and lessened the initial burst release, while culturing in dynamic conditions had no significant impact compared to static conditions. The nanoparticles were then incorporated into bioinks at various concentrations, and scaffolds with a three-dimensional (3D) structure were bioprinted from the bioinks containing human pulmonary fibroblasts and bronchial epithelial cells to investigate the potential use of a controlled release system in respiratory tissue engineering. It was found that the bioink loaded with a concentration of 4 µg/mL of nanoparticles had better printability compared to other concentrations, while the mechanical stability of the scaffolds was maintained over a 14-day culture period. The examination of the incorporated cells demonstrated a high degree of viability and proliferation with visualization of the beginning of an epithelial barrier layer. Taken together, this study demonstrates that a chitosan-coated alginate-based nanoparticle system allows the sustained release of growth factors in bioprinted respiratory tissue scaffolds.
机译:使用纳米颗粒系统来控制生长因子的释放是在组织工程中模拟天然组织生化环境的一种很有前途的方法。然而,在适当的治疗窗口内维持生长因子释放是一项挑战,尤其是在生物打印支架中。在这项研究中,开发了一种载有肝细胞生长因子的壳聚糖包被的藻酸盐基纳米颗粒系统,然后将其整合到生物打印支架中。研究了释放动力学,重点是确定壳聚糖包被和培养条件的影响。我们的结果表明,壳聚糖涂层降低了释放速率并减少了初始爆发释放,而与静态条件相比,在动态条件下培养没有显着影响。然后将纳米颗粒以不同浓度掺入生物墨水中,并从含有人肺成纤维细胞和支气管上皮细胞的生物墨水中生物打印具有三维 (3D) 结构的支架,以研究控释系统在呼吸组织工程中的潜在用途。研究发现,与其他浓度的纳米颗粒相比,负载浓度为 4 μg/mL 纳米颗粒的生物墨水具有更好的适印性,而支架的机械稳定性在 14 天的培养期内保持不变。对掺入细胞的检查表明,上皮屏障层的起始可见,具有高度的活力和增殖能力。综上所述,本研究证明壳聚糖包被的藻酸盐基纳米颗粒系统允许在生物打印的呼吸组织支架中持续释放生长因子。

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