Superoxide Dismutase‐Like Regulated Fe/Ppa@PDA/B for Synergistically Targeting Ferroptosis/Apoptosis to Enhance Anti‐Tumor Efficacy

Author:

Ding Xin12,Wang Zidong2,Yu Qiying3,Michał Nowicki4,Roman Szewczyk4,Liu Yi156ORCID,Peng Na17

Affiliation:

1. Key Laboratory of Coal Conversion and New Carbon Materials of Hubei Province & Institute of Advanced Materials and Nanotechnology College of Chemistry and Chemical Engineering Wuhan University of Science and Technology Wuhan 430081 P. R. China

2. Hubei Key Laboratory of Pollutant Analysis & Reuse Technology College of Chemistry and Chemical Engineering Hubei Normal University Huangshi 435002 P. R. China

3. Central laboratory Tumor Hospital Affiliated to Nantong University Nantong 226361 P. R. China

4. Institute of Metrology and Biomedical Engineering Faculty of Mechatronics Warsaw University of Technology Warsaw 00‐661 Poland

5. School of Chemical and Environmental Engineering Wuhan Polytechnic University Wuhan 430023 P. R. China

6. Hubei Key Laboratory of Radiation Chemistry and Functional Materials Hubei University of Science and Technology Xianning 437100 P. R. China

7. Belt and Road Joint Laboratory on Measurement and Control Technology Huazhong University of Science and Technology Wuhan Hubei 430074 China

Abstract

AbstractThe cell apoptosis pathway of sonodynamic therapy (SDT) is usually blocked, resulting in limited therapeutic efficacy, therefore, the development of new methods for sensitizing targeted ferroptosis and promoting apoptosis is of great significance to improve the anti‐tumor efficacy of SDT. Herein, mesoporous Fe3O4 nanoparticles (NPs) are synthesized for loading pyropheophorbide‐a (ppa), surface‐coated by polydopamine (PDA) and further anchored with tumor‐targeting moieties of biotin to obtain Fe/ppa@PDA/B NPs. Fe/ppa@PDA/B displayes pH/ultrasound (US) responsive release properties, and magnetic resonance imaging (MRI) functions. Moreover, Fe3O4 NPs of Fe/ppa@PDA/B as the Fe source for ferroptosis, enhances ferroptosis sensitivity by consuming glutathione (GSH) and producing hydroxyl radical (OH). The quinone groups of PDA layer on Fe/ppa@PDA/B own free electrons, which led to effective superoxide dismutase (SOD) action through superoxide anion (O2) disproportionation to hydrogen peroxide (H2O2) and oxygen (O2), thus, overcame hypoxia of SDT and promoted ·OH generation by Fe ions under US trigger, synergistically improves ferroptosis and apoptosis to enhance the anti‐tumor efficacy of SDT both in vitro and in vivo. The anti‐tumor strategy of synergistic apoptosis and ferroptosis induce by GSH depletion and self‐sufficient O2 regulated by SOD provides a new idea for enhancing SDT efficacy.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

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