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Updated: Sep 15, 2025

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Published on: May 22, 2020
Flexible Microneedle Platform for Synergistic Chemo/Photothermal Ferroptosis Therapy via P-Glycoprotein Inhibition in
Zejun Lin1, Junhong Ling1, A M Omer2
1School of Food and Pharmacy, Zhejiang Ocean University, Zhoushan 316022, PR China.
Abstract:
Combining photothermal therapy (PTT) with chemotherapy shows promise for cancer treatment, but its efficacy is limited by heat shock protein (HSP)-induced thermoresistance and P-glycoprotein (P-gp)-mediated drug efflux. To overcome these challenges, we developed a tumor microenvironment-responsive microneedle platform for synergistic chemotherapy, PTT, and ferroptosis in breast cancer. The system employs Fe3+-coordinated dihydromyricetin (DMY) nanocarriers encapsulating doxorubicin (DMFD NPs) integrated into a flexible polyvinylpyrrolidone (PVP) microneedle patch. The patch adheres tightly to tumors, enabling the rapid delivery and targeted release of DMFD NPs under laser irradiation and acidic conditions. Released Fe3+/Fe2+ ions generate reactive oxygen species (ROS) via Fenton reactions, synergizing with PTT to induce ferroptosis. DMY concurrently inhibits HSP and P-gp, enhancing photothermal-chemotherapy efficacy. In vivo, this approach achieved 92% tumor inhibition, demonstrating its potential to address the limitations of conventional PTT and chemotherapy through localized multifunctional action.
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