A smart theranostic platform for photoacoustic and magnetic resonance dual-imaging-guided photothermal-enhanced chemodynamic therapy.
Haimei WangLu AnCheng TaoZiyi LingJiaomin LinQi-Wei TianShi-Ping YangPublished in: Nanoscale (2020)
The use of smart theranostic agents in multimodal imaging and treatment is a promising strategy to overcome the limitations of single mode diagnosis and treatment, and can greatly improve the diagnosis and effects of treatment. In this study, a gold@manganese dioxide (Au@MnO2) core-shell nanostructure was designed as a glutathione (GSH)-triggered smart theranostic agent for photoacoustic and magnetic resonance (MR) dual-imaging-guided photothermal-enhanced chemodynamic therapy. Both in vitro and in vivo experiments demonstrated not only that the photoacoustic and MR imaging function of Au@MnO2 could be activated by a high endogenous GSH concentration, but also that after being triggered by the endogenous GSH, Au@MnO2 had an excellent synergistic treatment effect in photothermal-enhanced chemodynamic therapy under the guidance of photoacoustic and MR imaging. This study demonstrated that the use of GSH-triggered Au@MnO2 in photoacoustic and MR dual-imaging-guided photothermal-enhanced chemodynamic therapy is a smart theranostic nanoplatform for the accurate diagnosis and efficient treatment of cancer.
Keyphrases
- photodynamic therapy
- fluorescence imaging
- magnetic resonance
- high resolution
- cancer therapy
- contrast enhanced
- drug delivery
- sensitive detection
- squamous cell carcinoma
- stem cells
- fluorescent probe
- computed tomography
- magnetic resonance imaging
- replacement therapy
- combination therapy
- mass spectrometry
- reduced graphene oxide
- papillary thyroid
- chronic pain
- single cell
- smoking cessation
- lymph node metastasis
- silver nanoparticles
- childhood cancer