Sung Baeckkyoung, Shaffer Steven, Sittek Michal, Alboslemy Talib, Kim Chanjoong, Kim Min-Ho
Department of Biological Sciences, Kent State University; Liquid Crystal Institute, Kent State University.
Department of Biological Sciences, Kent State University.
J Vis Exp. 2016 Feb 13(108):53680. doi: 10.3791/53680.
Magnetically-responsive nano/micro-engineered biomaterials that enable a tightly controlled, on-demand drug delivery have been developed as new types of smart soft devices for biomedical applications. Although a number of magnetically-responsive drug delivery systems have demonstrated efficacies through either in vitro proof of concept studies or in vivo preclinical applications, their use in clinical settings is still limited by their insufficient biocompatibility or biodegradability. Additionally, many of the existing platforms rely on sophisticated techniques for their fabrications. We recently demonstrated the fabrication of biodegradable, gelatin-based thermo-responsive microgel by physically entrapping poly(N-isopropylacrylamide-co-acrylamide) chains as a minor component within a three-dimensional gelatin network. In this study, we present a facile method to fabricate a biodegradable drug release platform that enables a magneto-thermally triggered drug release. This was achieved by incorporating superparamagnetic iron oxide nanoparticles and thermo-responsive polymers within gelatin-based colloidal microgels, in conjunction with an alternating magnetic field application system.
能够实现严格控制、按需给药的磁响应纳米/微工程生物材料已被开发为用于生物医学应用的新型智能软设备。尽管许多磁响应药物递送系统已通过体外概念验证研究或体内临床前应用证明了其有效性,但它们在临床环境中的使用仍因其生物相容性或生物降解性不足而受到限制。此外,许多现有平台的制造依赖于复杂的技术。我们最近展示了通过将聚(N-异丙基丙烯酰胺-共-丙烯酰胺)链作为次要成分物理包裹在三维明胶网络中来制备可生物降解的、基于明胶的热响应微凝胶。在本研究中,我们提出了一种简便的方法来制造可生物降解的药物释放平台,该平台能够实现磁热触发的药物释放。这是通过在基于明胶的胶体微凝胶中加入超顺磁性氧化铁纳米颗粒和热响应聚合物,并结合交变磁场应用系统来实现的。