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      Gold nanorod-photosensitizer complex for near-infrared fluorescence imaging and photodynamic/photothermal therapy in vivo.

      ACS Nano
      Animals, Biological Transport, Carcinoma, Squamous Cell, drug therapy, pathology, radiotherapy, Cell Line, Tumor, Cell Transformation, Neoplastic, Female, Gold, chemistry, Infrared Rays, Intracellular Space, drug effects, metabolism, radiation effects, Mice, Microscopy, Fluorescence, methods, Nanotubes, Photochemotherapy, Photosensitizing Agents, pharmacology, therapeutic use, Singlet Oxygen

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          Abstract

          A gold nanorod (GNR)-photosensitizer complex was developed for noninvasive near-infrared fluorescence imaging and cancer therapy. We showed that (a) fluorescence emission and singlet oxygen generation by AlPcS(4) were quenched after complex formation with GNRs; (b) 4-fold greater intracellular uptake and better in vitro phototoxicity were observed in GNR-AlPcS(4)-treated cells than in free AlPcS(4)-treated cells; and (c) after intravenous injection of the GNR-AlPcS(4) complex, tumor sites were clearly identified on near-infrared fluorescence images as early as 1 h after injection. The tumor-to-background ratio increased over time and was 3.7 at 24 h; tumor growth reduced by 79% with photodynamic therapy (PDT) alone and by 95% with dual photothermal therapy (PTT) and PDT. This novel multifunctional nanomedicine may be useful for near-infrared fluorescence imaging and PTT/PDT in various cancers.

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