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Mitochondria-targeted delivery and light controlled release of iron prodrug and CO to enhance cancer therapy by ferroptosis

Authors :
Lei Xia
Guang Chen
Wen-Jian Zhang
Long-Hai Wang
Ze Zhang
Chang-Hui Wang
Xuan Nie
Ye-Zi You
Fan Gao
Fei Wang
Chun-Yan Hong
Zong-Yao Hao
Source :
New Journal of Chemistry. 44:3478-3486
Publication Year :
2020
Publisher :
Royal Society of Chemistry (RSC), 2020.

Abstract

Mitochondrial malfunction is considered to be a decisive signal of apoptosis. It would be a promising strategy to target mitochondria in cancer cells to generate reactive oxygen species (ROS), thus directly inducing mitochondrial damage. We herein reported a mitochondria-targeted, photo-responsive polymer (Mito-PNBE), which can self-assemble into nanoparticles (Fe–CO@Mito-PNBE) encapsulated with diphenylcyclopropenone (light-responsive CO prodrugs) and aminoferrocene-based prodrugs via hydrophobic interactions. Upon UV-irradiation, the rapid release of CO and aminoferrocene-based prodrugs caused by disassembly was observed. On one hand, the released carbon monoxide in mitochondria could enhance ROS generation and accelerate oxidative metabolism. On the other hand, the aminoferrocene-based prodrugs will release Fe3+/Fe2+ ions in the tumor microenvironment, thus triggering the Fenton reaction, which generates more ROS and damages the mitochondria. Thus, the synergistic effect of the two drugs produces enough amounts of ROS in the mitochondria, leading to mitochondrial collapse with an enhanced cancer therapeutic effect. This multifunctional platform has potential in precision cancer therapy.

Details

ISSN :
13699261 and 11440546
Volume :
44
Database :
OpenAIRE
Journal :
New Journal of Chemistry
Accession number :
edsair.doi...........b51f1e572475754db62437b875906ff9
Full Text :
https://doi.org/10.1039/c9nj05860e