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X-ray induced photodynamic therapy with copper-cysteamine nanoparticles in mice tumors.


ABSTRACT: Photodynamic therapy (PDT), a treatment that uses a photosensitizer, molecular oxygen, and light to kill target cells, is a promising cancer treatment method. However, a limitation of PDT is its dependence on light that is not highly penetrating, precluding the treatment of tumors located deep in the body. Copper-cysteamine nanoparticles are a new type of photosensitizer that can generate cytotoxic singlet oxygen molecules upon activation by X-rays. In this paper, we report on the use of copper-cysteamine nanoparticles, designed to be targeted to tumors, for X-ray-induced PDT. In an in vivo study, results show a statistically significant reduction in tumor size under X-ray activation of pH-low insertion peptide-conjugated, copper-cysteamine nanoparticles in mouse tumors. This work confirms the effectiveness of copper-cysteamine nanoparticles as a photosensitizer when activated by radiation and suggests that these Cu-Cy nanoparticles may be good candidates for PDT in deeply seated tumors when combined with X-rays and conjugated to a tumor-targeting molecule.

SUBMITTER: Shrestha S 

PROVIDER: S-EPMC6708320 | biostudies-literature | 2019 Aug

REPOSITORIES: biostudies-literature

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X-ray induced photodynamic therapy with copper-cysteamine nanoparticles in mice tumors.

Shrestha Samana S   Wu Jing J   Sah Bindeshwar B   Vanasse Adam A   Cooper Leon N LN   Ma Lun L   Li Gen G   Zheng Huibin H   Chen Wei W   Antosh Michael P MP  

Proceedings of the National Academy of Sciences of the United States of America 20190801 34


Photodynamic therapy (PDT), a treatment that uses a photosensitizer, molecular oxygen, and light to kill target cells, is a promising cancer treatment method. However, a limitation of PDT is its dependence on light that is not highly penetrating, precluding the treatment of tumors located deep in the body. Copper-cysteamine nanoparticles are a new type of photosensitizer that can generate cytotoxic singlet oxygen molecules upon activation by X-rays. In this paper, we report on the use of copper-  ...[more]

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