4.8 Article

Iron Self-Boosting Polymer Nanoenzyme for Low-Temperature Photothermal-Enhanced Ferrotherapy

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 13, 期 26, 页码 30274-30283

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c01658

关键词

iron-engineered; nanoenzyme; self-boosting; low-temperature photothermal therapy; ferroptosis

资金

  1. City University of Hong Kong [JLFS/P-101/18]
  2. GRF [11300320]
  3. National Natural Science Foundation of China [32001010, 81772915, 82073022]
  4. Beijing Natural Science Foundation [2214078]
  5. Beijing Institute of Technology Research Fund Program for Young Scholars, and Young Elite Scientist Sponsorship Program of Beijing Association for Science and Technology
  6. ITF [ITS/219/19]

向作者/读者索取更多资源

The study prepared an iron self-boosting polymer nanoenzyme FePPy NPs which can decompose H2O2 to induce a nonapoptotic ferroptosis pathway, and also showed impressive photothermal properties to accelerate Fenton reactions for enhanced ferroptosis efficacy.
In this work, an iron self-boosting polymer nanoenzyme was prepared by using pyrrole-3-carboxylic acid as a monomer and iron as an oxidizing agent via a simple and one-step method [hereafter referred to as FePPy nanoparticles (NPs)]. In fact, researchers previously paid negligible attention on the iron element during the polymerization reaction of polypyrrole, thus the intrinsically catalytic functions and enzymatic activities of the high iron content (wt %: 21.11%) are ignored and not fully explored. As expected, results demonstrate that the as-synthesized FePPy NPs can decompose H2O2 to generate hydroxyl radicals ((OH)-O-center dot) which exhibit enzyme characteristics, further inducing a nonapoptotic ferroptosis pathway. Moreover, the nanoenzyme shows impressive photothermal properties which can accelerate the Fenton reactions to enhance ferroptosis. The combined photothermal and ferroptosis therapy of FePPy NPs was found to have high efficacy. With the properties of easy synthesis, high efficacy, and good biocompatibility, the FePPy NPs are considered as potential agents for cancer treatments.

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