Bottom-up synthesis of WS<sub>2</sub> nanosheets with synchronous surface modification for imaging guided tumor regression.
basic_science · Level V
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- Record sourced from PubMed, PMID 28611005.
- Also identified by DOI 10.1016/j.actbio.2017.06.014.
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Abstract
Two-dimensional transition metal dichalcogenides (TMDs) have been receiving great attention as NIR photothermal transducing agent in tumor photothermal therapy. Keeping in mind the low efficiency of the conventional top-down exfoliated 2D TMDs and the complexity of their surface modifications, we herein proposed a bottom-up strategy for the one-pot hydrothermal and controlled synthesis of surface polyvinyl pyrrolidone (PVP) modified WS<sub>2</sub> nanosheets. The material design was based on the chelating-coordinating effect between the lone pair electrons of oxygen of PVP carbonyl group and the unoccupied orbital (5d orbitals) of tungsten. The WS<sub>2</sub> nanosheets with synchronous surface PVP grafting showed an excellent photothermal conversion performance, while the surface anchored PVP guaranteed its colloidal stability. Moreover, the strong X-ray attenuation ability and near-infrared (NIR) absorbance of WS<sub>2</sub>-PVP<sub>360kDa</sub> enabled the sensitive in vitro and in vivo computed tomography and photoacoustic imaging. The WS<sub>2</sub>-PVP<sub>360kDa</sub> nanosheets were biocompatible and exhibited promising in vitro and in vivo anti-cancer efficacy. Findings in this report may greatly promote the design of colloidal stable and biocompatible 2D TMDs and their future clinical translations. A bottom-up strategy for the one-pot and controlled synthesis of surface polyvinyl pyrrolidone (PVP) modified WS<sub>2</sub> nanosheets was proposed for the first time. By hydrothermally treating the mixture solution of tetrathiotungstate and PVP, Owing to the chelating-coordinating effect between the lone pair electrons of oxygen of PVP carbonyl group and the unoccupied orbital (5d orbitals) of tungsten, PVP was synchronously graphed on WS<sub>2</sub>-PVP nanosheets surface. The formed WS<sub>2</sub>-PVP nanosheets were colloidal stable, biocompatible, and exhibited promising computed tomography, photoacoustic imaging and tumor photothermal therapy efficacy both in vitro and in vivo.
Medical subject headings
- Nanostructures
- Neoplasms, Experimental
- Sulfides
- Tomography, X-Ray Computed
- Tungsten Compounds