Photo-/piezo-activated ultrathin molybdenum disulfide nanomedicine for synergistic tumor therapy.
Lili XiaJunjie ChenYujie XieShan ZhangWeiwei XiaWei FengYu ChenPublished in: Journal of materials chemistry. B (2023)
Molybdenum disulfide (MoS 2 ), as a transition metal dichalcogenide, has attracted tremendous attention owing to its remarkable electronic, physical, and chemical properties. In this study, based on the energy-converting nanomedicine, we report multifunctional two-dimensional (2D) MoS 2 nanosheets with inherent plasmonic property and piezocatalytic activity for imaging-guided synergistic tumor therapy. MoS 2 nanosheets display strong plasmon resonances in the near-infrared (NIR) region, especially in the second NIR biological window, possessing a notable light energy to heat effect under 1064 nm laser irradiation, which not only serves as a robust photothermal agent for cancer cell ablation but also acts as a contrast-enhanced agent for thermal imaging and photoacoustic imaging. Meanwhile, MoS 2 nanosheets feature a remarkable piezotronic effect, exhibiting mechanical vibration energy to electricity under the stimulation of ultrasound-mediated microscopic pressure for reactive oxygen species generation to further kill cancer cells. The new function for old materials may open up the in-depth exploration of MoS 2 -based functional biomaterials in the future clinical application of imaging-guided photothermal and piezocatalytic synergetic treatment.
Keyphrases
- mental health
- transition metal
- quantum dots
- cancer therapy
- reduced graphene oxide
- high resolution
- photodynamic therapy
- visible light
- fluorescence imaging
- magnetic resonance imaging
- contrast enhanced
- highly efficient
- drug delivery
- room temperature
- computed tomography
- metal organic framework
- magnetic resonance
- reactive oxygen species
- machine learning
- working memory
- minimally invasive
- physical activity
- optical coherence tomography
- diffusion weighted
- fluorescent probe
- diffusion weighted imaging
- combination therapy
- ultrasound guided
- deep learning
- cell therapy
- high frequency
- ionic liquid