Advanced Science · 2020 · 30 citations · 29 references
Excess electrons play important roles for the construction of superficial active sites on nanocatalysts. However, providing excess electrons to nanocatalysts in vivo is still a challenge, which limits the applications of nanocatalysts in biomedicine. Herein, auger electrons (AEs) emitted from radionuclide 125 (<sup>125</sup>I) are used in situ to construct active sites in a nanocatalyst (TiO<sub>2</sub>) and the application of this method is further extended to cancer catalytic internal radiotherapy (CIRT). The obtained <sup>125</sup>I-TiO<sub>2</sub> nanoparticles first construct superficial Ti<sup>3+</sup> active sites via the reaction between Ti<sup>4+</sup> and AEs. Then Ti<sup>3+</sup> stretches and weakens the O-H bond of the absorbed H<sub>2</sub>O, thus enhancing the radiolysis of H<sub>2</sub>O molecules and generating hydroxyl radicals (•OH). All in vitro and in vivo results demonstrate a good CIRT performance. These findings will broaden the application of radionuclides and introduce new perspectives to nanomedicine.
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