Synergistic Photochemo Effects Based on Light‐Activatable Dual Prodrug Nanoparticles for Effective Cancer Therapy

Author:

Liu Zhi‐Yong12,Chen Guobo1,Wang Xiang1,Xu Ru-Chen2,Wang Fu2,Qi Zhuo‐Ran2,Sun Jia‐Lei2,Zhang Guang‐Cong2,Miao Yuqing1,Shen Xi‐Zhong23ORCID,Zhu Ji‐Min2ORCID,Weng Shu‐Qiang2ORCID,Chen Hong4ORCID,Li Yuhao1ORCID

Affiliation:

1. School of Materials and Chemistry Institute of Bismuth Science Shanghai Collaborative Innovation Center of Energy Therapy for Tumors University of Shanghai for Science and Technology Shanghai 200093 China

2. Department of Gastroenterology and Hepatology and Shanghai Institute of Liver Diseases Zhongshan Hospital Fudan University Shanghai 200032 China

3. Key Laboratory of Medical Molecular Virology Shanghai Medical College of Fudan University Shanghai 200032 China

4. Department of Endocrinology and Metabolism Zhongshan Hospital Fudan University Shanghai 200032 China

Abstract

AbstractFerroptosis is identified as a novel type of cell death with distinct properties involved in physical conditions and various diseases, including cancers. It is considered that ferroptosis provides a promising therapeutic strategy for optimizing oncotherapy. Although erastin is an effective ferroptosis trigger, the potential of its clinical application is largely restricted by its poor water solubility and concomitant limitations. To address this issue, an innovative nanoplatform (PE@PTGA) that integrated protoporphyrin IX (PpIX) and erastin coated with amphiphilic polymers (PTGA) to evoke ferroptosis and apoptosis is constructed and exemplified using an orthotopic hepatocellular carcinoma (HCC) xenograft mouse model as a paradigm. The self‐assembled nanoparticles can enter HCC cells and release PpIX and erastin. With light stimulation, PpIX exerts hyperthermia and reactive oxygen species to inhibit the proliferation of HCC cells. Besides, the accumulated reactive oxygen species (ROS) can further promote erastin‐induced ferroptosis in HCC cells. In vitro and in vivo studies reveal that PE@PTGA synergistically inhibits tumor development by stimulating both ferroptosis‐ and apoptosis‐related pathways. Moreover, PE@PTGA has low toxicity and satisfactory biocompatibility, suggesting its promising clinical benefit in cancer treatments.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Pharmaceutical Science,Biomedical Engineering,Biomaterials

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Topology-regulated nanocatalysts for ferroptosis-mediated cancer phototherapy;Journal of Colloid and Interface Science;2024-02

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