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Controlled Bioactive Molecules Delivery Strategies for Tendon and Ligament Tissue Engineering using Polymeric Nanofibers

机译:肌腱和韧带组织工程中使用聚合物纳米纤维的受控生物活性分子传递策略

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摘要

The interest in polymeric nanofibers has escalated over the past decade given its promise as tissue engineering scaffolds that can mimic the nanoscale structure of the native extracellular matrix. With functionalization of the polymeric nanofibers using bioactive molecules, localized signaling moieties can be established for the attached cells, to stimulate desired biological effects and direct cellular or tissue response. The inherently high surface area per unit mass of polymeric nanofibers can enhance cell adhesion, bioactive molecules loading and release efficiencies, and mass transfer properties. In this review article, the application of polymeric nanofibers for controlled bioactive molecules delivery will be discussed, with a focus on tendon and ligament tissue engineering. Various polymeric materials of different mechanical and degradation properties will be presented along with the nanofiber fabrication techniques explored. The bioactive molecules of interest for tendon and ligament tissue engineering, including growth factors and small molecules, will also be reviewed and compared in terms of their nanofiber incorporation strategies and release profiles. This article will also highlight and compare various innovative strategies to control the release of bioactive molecules spatio-temporally and explore an emerging tissue engineering strategy involving controlled multiple bioactive molecules sequential release. Finally, the review article concludes with challenges and future trends in the innovation and development of bioactive molecules delivery using polymeric nanofibers for tendon and ligament tissue engineering.
机译:在过去的十年中,人们对聚合物纳米纤维的兴趣不断增加,因为它有望成为可以模仿天然细胞外基质的纳米级结构的组织工程支架。通过使用生物活性分子对聚合物纳米纤维进行功能化,可以为附着的细胞建立局部信号传导部分,从而刺激所需的生物学效应并指导细胞或组织反应。每单位质量的聚合物纳米纤维固有的高表面积可以增强细胞粘附力,生物活性分子的装载和释放效率以及传质性能。在这篇综述文章中,将讨论聚合物纳米纤维在受控生物活性分子递送中的应用,重点是肌​​腱和韧带组织工程。将介绍具有不同机械和降解特性的各种聚合材料,以及探索的纳米纤维制造技术。对于肌腱和韧带组织工程感兴趣的生物活性分子,包括生长因子和小分子,也将根据其纳米纤维掺入策略和释放曲线进行审查和比较。本文还将重点介绍和比较各种创新策略,以时空控制生物活性分子的释放,并探索一种新兴的组织工程策略,其中涉及受控的多个生物活性分子顺序释放。最后,该综述文章总结了使用聚合物纳米纤维进行肌腱和韧带组织工程的生物活性分子输送的创新和发展中的挑战和未来趋势。

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