药物输送
聚己内酯
细胞毒性
输送系统
化学
材料科学
癌症治疗
自愈水凝胶
药品
细胞内
癌细胞
毒品携带者
控制释放
生物物理学
纳米技术
纳米纤维
氧化还原
涂层
前药
氢氧化物
纳米载体
药理学
组合化学
联轴节(管道)
细胞存活
阿霉素
生物相容性
肿瘤微环境
生物相容性材料
靶向给药
作者
Neeraja Bose,Kumar Gokulkumar,Shih-Hsuan Chen,Ramalingam Mahaan,Dheepthy Fabius Suresh,P Varatharajan,Ganesh Munuswamy Ramanujam,K Lee
标识
DOI:10.1021/acsami.6c06324
摘要
Conventional localized drug delivery systems (DDS) and chemodynamic therapy (CDT) platforms often lack structural integrity, hydration-mediated transport control, and architectures capable of sustaining redox activity at tumor sites. Here, we report a hybrid nanofibrous hydrogel that integrates CoMn layered double hydroxide (CoMn-LDH) within electrospun polycaprolactone (PCL) fibers, followed by a polyacrylamide (PAAm) hydrogel coating to construct a localized, ECM-mimetic therapeutic platform with dual functionality. Unlike Conventional CDT systems that treat drug delivery and catalytic activity independently, this design integrates a hydrated diffusion network with redox-active centers within a single architecture. The CoMn@PCL/PAAm HNF exhibits enhanced wettability of 26.4° and pronounced swelling-assisted transport, enabling sustained and non-Fickian release with cumulative release of 96.99%, 86.77%, and 97.83% at pH 6.2, 7.4, and 8.8, respectively. Furthermore, the system promotes peroxide-activated ROS generation, enhances intracellular oxidative stress, and induces apoptosis-mediated cytotoxicity against HuH7 and SiHa cells, with inhibition rates of 64.73% and 52.03%, respectively, while remaining nonhemolytic. These results indicate that interface-engineered transport reaction coupling governs both drug diffusion and ROS generation, highlighting the potential of CoMn@PCL/PAAm HNF for CDT integrated implantable anticancer applications with reduced system toxicity.
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