Aguilar Ludwig Erik, GhavamiNejad Amin, Park Chan Hee, Kim Cheol Sang
Department of Bionanosystem Engineering, Graduate School, Chonbuk National University, Republic of Korea.
Department of Bionanosystem Engineering, Graduate School, Chonbuk National University, Republic of Korea; Department of Mechanical Design Engineering, Chonbuk National University, Jeonju City, Republic of Korea.
Nanomedicine. 2017 Feb;13(2):527-538. doi: 10.1016/j.nano.2016.12.012. Epub 2016 Dec 20.
A functional cover made up of core-shell nanofibers with a unique combination of thermoresponsive polymeric shell and stretchable polymeric core for non-vascular nitinol stents that uses an alternating magnetic field (AMF) to induce heat in the stent for hyperthermia therapy and simultaneously release 5-fluorouracil and/or paclitaxel was designed. Varying the ratios of NIPAAm to HMAAm monomer resulted in different LCST properties for the synthesized copolymer and further utilized for an on-demand drug release. Biocompatibility test using NIH-3T3 fibroblast cells indicates that the composite with drug content is biocompatible and the in-vitro cancer cytotoxicity test using ESO26 and OE21 cancer cells proved that the material shows cancer cytotoxic properties via combination of dual drug and hyperthermia therapy. With this functional material, we propose a tailorable and on-demand drug release with more control that can be employed for a combination drug therapy/single drug therapy combined with hyperthermia therapy for cancer cytotoxicity effect.
设计了一种功能性涂层,其由核壳纳米纤维组成,具有热响应性聚合物壳和可拉伸聚合物核的独特组合,用于非血管镍钛诺支架。该支架利用交变磁场(AMF)在支架中产生热量以进行热疗,并同时释放5-氟尿嘧啶和/或紫杉醇。改变NIPAAm与HMAAm单体的比例会导致合成共聚物具有不同的低临界溶液温度特性,并进一步用于按需药物释放。使用NIH-3T3成纤维细胞进行的生物相容性测试表明,含药物的复合材料具有生物相容性,而使用ESO26和OE21癌细胞进行的体外癌症细胞毒性测试证明,该材料通过双重药物和热疗的组合显示出癌症细胞毒性特性。利用这种功能性材料,我们提出了一种更可控的可定制按需药物释放方法,可用于联合药物治疗/单一药物治疗与热疗相结合以产生癌症细胞毒性作用。