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Updated: Jul 30, 2026

One Minute, Sub-One-Watt Photothermal Tumor Ablation Using Porphysomes, Intrinsic Multifunctional Nanovesicles
Published on: September 18, 2013
Photoacoustic Imaging Guided Photothermal and Chemodynamic Combined Therapy for Cancer Using "All in One" W18O49
Abstract:
Chemodynamic therapy based on Fenton or Fenton-like reactions is an emerging cancer therapy that has attracted considerable attention due to its high selectivity for tumors. However, the low catalytic efficiency of the Fenton or Fenton-like agent limits its therapeutic effect. Combination therapies based on chemodynamic therapy using "all-in-one" agents show great potential for cancer treatment. In this study, W18O49 nanorods with strong near-infrared absorption and excellent Fenton-like reaction performance were prepared, and their application in photoacoustic imaging-guided photothermal-chemodynamic combination cancer therapy was explored. First, hydrophobic W18O49 nanorods were synthesized via a one-step pyrolysis method. Hydrophilic W18O49 nanorods were then prepared via hydrophobic self-assembly between oleyl amine-coated W18O49 nanorods and an amphiphilic polymer. The W18O49 nanorods exhibited good photoacoustic, photothermal, and chemodynamic performance in vitro along with good photoacoustic imaging contrast and excellent therapeutic effect in photothermal-chemodynamic combination cancer therapy in vivo. This study provides a low-cost and easy-to-prepare agent for photothermal-chemodynamic combination therapy and promotes the application of photothermal-chemodynamic combination therapy in cancer treatment.
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