自噬
过氧化氢
转移
癌细胞
癌症
癌症研究
细胞生物学
细胞凋亡
氢氧化物
材料科学
生物物理学
化学
生物化学
生物
遗传学
有机化学
作者
Limin Pan,Haibao Peng,Bowon Lee,Jiaxu Zhao,Xiulian Shen,Ximei Yan,Yipeng Hua,Jeonghyun Kim,Dokyoon Kim,Mouhong Lin,Shengjian Zhang,Xiaohui Li,Xueying Yi,Feibai Yao,Zhiyong Qin,Jiulin Du,Yudan Chi,Jwa‐Min Nam,Taeghwan Hyeon,Jianan Liu
标识
DOI:10.1002/adma.202305394
摘要
Abstract Lysosomes are critical in modulating the progression and metastasis for various cancers. There is currently an unmet need for lysosomal alkalizers that can selectively and safely alter the pH and inhibit the function of cancer lysosomes. Here an effective, selective, and safe lysosomal alkalizer is reported that can inhibit autophagy and suppress tumors in mice. The lysosomal alkalizer consists of an iron oxide core that generates hydroxyl radicals (•OH) in the presence of excessive H + and hydrogen peroxide inside cancer lysosomes and cerium oxide satellites that capture and convert •OH into hydroxide ions. Alkalized lysosomes, which display impaired enzyme activity and autophagy, lead to cancer cell apoptosis. It is shown that the alkalizer effectively inhibits both local and systemic tumor growth and metastasis in mice. This work demonstrates that the intrinsic properties of nanoparticles can be harnessed to build effective lysosomal alkalizers that are both selective and safe.
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