光热治疗
光动力疗法
光子上转换
材料科学
纳米载体
层状双氢氧化物
纳米技术
纳米颗粒
介孔二氧化硅
催化作用
发光
介孔材料
化学
光电子学
生物化学
有机化学
作者
Tao Jia,Zhao Wang,Qianqian Sun,Shuming Dong,Jiating Xu,Fangmei Zhang,Lili Feng,Fei He,Dan Yang,Piaoping Yang,Jun Lin
出处
期刊:Small
[Wiley]
日期:2020-10-26
卷期号:16 (46): e2001343-e2001343
被引量:113
标识
DOI:10.1002/smll.202001343
摘要
Abstract Multimodal synergistic therapy based on photodynamic therapy (PDT), photothermal therapy (PTT), and chemodynamic therapy (CDT) has attracted increasing attention in cancer therapy. However, the scant therapeutic efficiency is always a barrier for further application. Herein, a smart tumor microenvironment (TME) responsive nanocatalysts are developed by adopting Fe–Mn layered double hydroxides (FeMn‐LDH) as an effective photothermal nanocarrier to load mesoporous silica and chlorin e6 (Ce6)‐covalently coated upconversion nanoparticles (UCSP) for multimodal imaging for directed therapy. Under acidic TME, FeMn‐LDH degrades into Fe 3+ and Mn 2+ ions to initiate a Fenton‐like reaction inducing CDT and enhancing magnetic resonance imaging. Additionally, Fe 3+ can decompose H 2 O 2 to oxygen (O 2 ), enhancing PDT guided by UCSP. As a representative noninvasive imaging probe, the upconversion luminescence will recover after decomposition of FeMn‐LDH, and provide high‐resolution upconversion luminescent imaging guidance for pinpointed PDT. Moreover, the photothermal properties of FeMn‐LDH can further enhance CDT effects. The synergistic therapy and multifunctional imaging can realize the integration of diagnosis and treatment.
科研通智能强力驱动
Strongly Powered by AbleSci AI