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Open-Shell Nanosensitizers for Glutathione Responsive Cancer Sonodynamic Therapy.


ABSTRACT: Deleterious effects to normal tissues and short biological half-life of sonosensitizers limit the applications of sonodynamic therapy (SDT). Herein, a new sonosensitizer (Cu(II)NS) is synthesized that consists of porphyrins, chelated Cu2+ , and poly(ethylene glycol) (PEG) to overcome the challenges of SDT. As Cu2+ contains 27 electrons, Cu(II)NS has an unpaired electron (open shell), resulting in a doublet ground state and little sonosensitivity. Overexpressed glutathione in the tumor can reduce Cu2+ to generate Cu(I)NS, leading to a singlet ground state and recuperative sonosensitivity. Additionally, PEG endows Cu(II)NS with increased blood biological half-life and enhanced tumor accumulation, further increasing the effect of SDT. Through regulating the valence state of Cu, cancer SDT with enhanced therapeutic index is achieved.

SUBMITTER: Wang H 

PROVIDER: S-EPMC9012683 | biostudies-literature | 2022 Apr

REPOSITORIES: biostudies-literature

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Open-Shell Nanosensitizers for Glutathione Responsive Cancer Sonodynamic Therapy.

Wang Han H   Guo Jinxiao J   Lin Wilson W   Fu Zi Z   Ji Xiuru X   Yu Bo B   Lu Min M   Cui Wenguo W   Deng Lianfu L   Engle Jonathan W JW   Wu Zhiyuan Z   Cai Weibo W   Ni Dalong D  

Advanced materials (Deerfield Beach, Fla.) 20220307 15


Deleterious effects to normal tissues and short biological half-life of sonosensitizers limit the applications of sonodynamic therapy (SDT). Herein, a new sonosensitizer (Cu(II)NS) is synthesized that consists of porphyrins, chelated Cu<sup>2+</sup> , and poly(ethylene glycol) (PEG) to overcome the challenges of SDT. As Cu<sup>2+</sup> contains 27 electrons, Cu(II)NS has an unpaired electron (open shell), resulting in a doublet ground state and little sonosensitivity. Overexpressed glutathione i  ...[more]

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