化学
谷胱甘肽
过氧化氢
活性氧
紫杉醇
药物输送
体内
药理学
纳米凝胶
生物化学
化疗
有机化学
酶
生物技术
外科
生物
医学
作者
Daiqin Chen,Guoqiang Zhang,Ruimin Li,Mirong Guan,Xueyun Wang,Toujun Zou,Ying Zhang,Chunru Wang,Chunying Shu,Hao Hong,Li‐Jun Wan
摘要
Reactive oxygen species (ROS) and glutathione (GSH) dual responsive nanoparticulate drug delivery systems (nano-DDSs) hold great promise to improve the therapeutic efficacy and alleviate the side effects of chemo drugs in cancer theranosis. Herein, hydrogen peroxide (H2O2) and GSH dual responsive thioketal nanoparticle (TKN) was rationally designed for paclitaxel (PTX) delivery. Compared to other stimuli-sensitive nano-DDSs, this dual responsive DDS is not only sensitive to biologically relevant H2O2 and GSH for on-demand drug release but also biodegradable into biocompatible byproducts after fulfilling its delivering task. Considering the heterogeneous redox potential gradient, the PTX loaded TKNs (PTX-TKNs) might first respond to the extracellular ROS and then to the intracellular GSH, achieving a programmable release of PTX at the tumor site. The selective toxicity of PTX-TKNs to tumor cells with high levels of ROS and GSH was verified both in vitro and in vivo.
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