Ultrasmall Oxygen-Deficient Bimetallic Oxide MnWO<sub>X</sub> Nanoparticles for Depletion of Endogenous GSH and Enhanced Sonodynamic Cancer Therapy.

Gong, Fei; Cheng, Liang; Yang, Nailin; Betzer, Oshra; Feng, Liangzhu; Zhou, Qiang; Li, Yonggang; Chen, Ruihua et al. · Adv Mater · 2019

basic_science · Level V

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Abstract

Sonodynamic therapy (SDT) triggered by ultrasound (US) has attracted increasing attention owing to its abilities to overcome critical limitations including low tissue-penetration depth and phototoxicity in photodynamic therapy. Herein, the design of a new type of sonosensitizer is revealed, namely, ultrasmall oxygen-deficient bimetallic oxide MnWO<sub>X</sub> nanoparticles, for multimodal imaging-guided enhanced SDT against cancer. As-made MnWO<sub>X</sub> nanoparticles with poly(ethylene glycol) (PEG) modification show high physiological stability and biocompatibility. Interestingly, such MnWO<sub>X</sub> -PEG nanoparticles exhibit highly efficient US-triggered production of <sup>1</sup> O<sub>2</sub> and •OH, higher than that of previously reported sonosensitizers (e.g., protoporphyrin IX and titanium dioxide), because the oxygen-deficient structure of MnWO<sub>X</sub> serves as an electron trap site to prevent electron-hole recombination. The glutathione depletion capability of MnWO<sub>X</sub> -PEG can also further favor SDT-triggered cancer cell killing. With efficient tumor homing as illustrated by computer tomography and magnetic resonance imaging, MnWO<sub>X</sub> -PEG enables effective destruction of mouse tumors under US stimulation. After accomplishing its therapeutic functions, MnWO<sub>X</sub> -PEG can be metabolized by the mouse body without any long-term toxicity. Herein, a new type of sono-sensitizing agent with high SDT efficacy, multimodal imaging functions, and rapid clearance is presented, an agent which is promising for noninvasive SDT cancer treatment.

Medical subject headings