Department of Safety Engineering, Chungbuk National University, Cheongju, Chungbuk 28644, Korea.
Nanotechnology. 2020 Aug 14;31(33):335103. doi: 10.1088/1361-6528/ab9043. Epub 2020 May 5.
The design of smart and functional nanocarriers for drug delivery systems that use a variety of organic and inorganic materials has led to the development of nanomedicines with improved therapeutic efficiency and reduced side effects. In this study, a pH- and temperature-responsive, controlled-release system with a high capacity for drug loading was developed based on radially porous silica nanoparticles composed of functionalized ligands and polymer encapsulation. This drug delivery system uses radially oriented mesoporous silica nanoparticles as the drug carrier, and control of the surface chemistry of those nanocarriers allows high-capacity loading efficiency of target drugs and stimuli-responsive release kinetics governed by pH and temperature. The delivery of ibuprofen was chosen to test this system, and a maximum loading efficiency of ca. 270 wt% was established, which was 3 times greater than that in previous studies for silica nanoparticles such as SBA-15, MCA-41, and MCM-48. In addition, the pH- and temperature-responsive release of ibuprofen was achieved when the surface of the nanocarriers was treated by pH-responsive amine functionalization and a temperature-responsive surface coating of agarose gel. Finally, cytotoxicity testing using the fibroblast cells showed that the developed silica nanocarriers have no toxicity on the cells, which should allow these nanocarriers to be applied as a nanomedicine in drug delivery systems.
设计智能且功能化的纳米载体用于药物输送系统,这些载体使用各种有机和无机材料,已经开发出了具有提高的治疗效率和降低的副作用的纳米药物。在这项研究中,基于功能化配体和聚合物包封的径向多孔硅纳米粒子,开发了一种具有 pH 和温度响应性、高载药能力的控制释放系统。该药物输送系统使用定向的介孔硅纳米粒子作为药物载体,并且通过控制这些纳米载体的表面化学,可以实现高载药效率和 pH 和温度响应的释放动力学。选择布洛芬作为模型药物来测试该系统,建立了约 270wt%的最大载药效率,比之前报道的 SBA-15、MCA-41 和 MCM-48 等硅纳米粒子的载药效率高 3 倍。此外,通过 pH 响应性胺官能化和温度响应性琼脂糖凝胶表面涂层处理纳米载体的表面,实现了布洛芬的 pH 和温度响应释放。最后,使用成纤维细胞进行的细胞毒性测试表明,所开发的硅纳米载体对细胞没有毒性,这应该允许这些纳米载体作为纳米药物在药物输送系统中应用。