Weng Lin, Xie Jingwei
Department of Pharmaceutical Sciences and Mary & Dick Holland Regenerative Medicine Program, University of Nebraska Medical Center, Omaha, Nebraska 68198, United States.
Curr Pharm Des. 2015;21(15):1944-59. doi: 10.2174/1381612821666150302151959.
In biological systems, chemical molecules or ions often release upon certain conditions, at a specific location, and over a desired period of time. Electrospun nanofibers that undergo alterations in the physicochemical characteristics corresponding to environmental changes have gained considerable interest for various applications. Inspired by biological systems, therapeutic molecules have been integrated with these smart electrospun nanofibers, presenting activation-modulated or feedback-regulated control of drug release. Compared to other materials like smart hydrogels, environment-responsive nanofiber-based drug delivery systems are relatively new but possess incomparable advantages due to their greater permeability, which allows shorter response time and more precise control over the release rate. In this article, we review the mechanisms of various environmental parameters functioning as stimuli to tailor the release rates of smart electrospun nanofibers. We also illustrate several typical examples in specific applications. We conclude this article with a discussion on perspectives and future possibilities in this field.
在生物系统中,化学分子或离子常常在特定条件下、特定位置以及在期望的时间段内释放。对应环境变化而发生物理化学特性改变的电纺纳米纤维在各种应用中引起了广泛关注。受生物系统的启发,治疗性分子已与这些智能电纺纳米纤维相结合,呈现出药物释放的激活调节或反馈调节控制。与智能水凝胶等其他材料相比,基于环境响应纳米纤维的药物递送系统相对较新,但由于其更高的渗透性而具有无可比拟的优势,这使得响应时间更短且对释放速率的控制更精确。在本文中,我们综述了各种环境参数作为刺激因素来调节智能电纺纳米纤维释放速率的机制。我们还举例说明了特定应用中的几个典型例子。我们在本文结尾讨论了该领域的前景和未来可能性。