层状双氢氧化物
葡萄糖氧化酶
材料科学
亚硫酸盐
细胞内
癌细胞
体内
纳米技术
生物物理学
催化作用
生物化学
化学
癌症
生物
生物传感器
生物技术
遗传学
作者
Qiang Chu,Linhua Liao,Bin Liu,Gaorong Han,Xiang Li
标识
DOI:10.1002/adfm.202103262
摘要
Abstract As a type of unique gaseous molecules, SO 2 presents capabilities in the feasible cellular influx and the induction of apoptosis by generating intracellular toxic radicals. Developing therapeutic platforms to enable effective SO 2 gas release at the tumor site is highly demanded in the exploration of more “green” and effective treatment protocols for cancer therapy but remains challenging. Here for the first time, fine nanosheets composing of Mg‐Al layered double hydroxides (MgAl LDH) are synthesized and inserted with sulfite in its layered structures (MgAl‐SO 3 LDH). After the loading of glucose oxidase (GOx/MgAl‐SO 3 LDH), the composite nanosheets present the controllable SO 2 gas release in an acidic responsive manner. Owing to the glycolysis effect of GOx, the gluconic acid generated agitates the intracellular SO 2 release from nanosheets, and excessive H 2 O 2 reacts with SO 2 effectively and facilitates the production of toxic radicals, inducing remarkable oxidative damages to tumor cells. Meanwhile, the consumption of intracellular glucose by GOx/MgAl‐SO 3 LDH depletes the energy supply of tumor cells, favoring the tumor inhibition both in vitro and in vivo in a synergistic fashion. Therefore, this study has provided distinctive perspectives in the exploration of therapeutic platforms with green functionalities and biodegradability for effective tumor treatment.
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