Nanogalvanic Cells Release Highly Reactive Electrons in Tumors to Effectively Eliminate Tumors

材料科学 电子 癌症研究 纳米技术 医学 物理 核物理学
作者
Wei‐Qiang Huang,Ya‐Qi Zhu,Fan Gao,Wei You,Guang Chen,Xuan Nie,L. Xia,Long‐Hai Wang,Chun‐Yan Hong,Ze Zhang,Fei Wang,Yue Yu,Ye‐Zi You
出处
期刊:Advanced Materials [Wiley]
卷期号:36 (30): e2404199-e2404199 被引量:5
标识
DOI:10.1002/adma.202404199
摘要

External stimuli triggering chemical reactions in cancer cells to generate highly reactive chemical species are very appealing for cancer therapy, in which external irradiation activating sensitizers to transfer energy or electrons to surrounding oxygen or other molecules is critical for generating cytotoxic reactive species. However, poor light penetration into tissue, low activity of sensitizers, and reliance on oxygen supply restrict the generation of cytotoxic chemical species in hypoxic tumors, which lowers the therapeutic efficacy. Here, this work presents galvanic cell nanomaterials that can directly release highly reactive electrons in tumors without external irradiation or photosensitizers. The released reactive electrons directly react with surrounding biomolecules such as proteins and DNA within tumors to destroy them or react with other surrounding (bio)molecules to yield cytotoxic chemical species to eliminate tumors independent of oxygen. Administering these nanogalvanic cells to mice results in almost complete remission of subcutaneous solid tumors and deep metastatic tumors. The results demonstrate that this strategy can further arouse an immune response even in a hypoxic environment. This method offers a promising approach to effectively eliminate tumors, similar to photodynamic therapy, but does not require oxygen or irradiation to activate photosensitizers.
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