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      Deep Insight of Design, Mechanism, and Cancer Theranostic Strategy of Nanozymes

      research Deep Insight of Design, Mechanism, and Cancer Theranostic Strategy of Nanozymes

      112 citations , November 2023 in “Nano-Micro Letters”
      This review discusses the developments over the past five years in nanozyme-based theranostics for tumor therapy, including their classification, design, and synergistic strategies. It also outlines the challenges and prospects of using nanozymes to enhance selectivity, biosafety, repeatability, and stability in therapeutic applications.
      Nanozymes Expanding the Boundaries of Biocatalysis

      research Nanozymes expanding the boundaries of biocatalysis

      85 citations , July 2025 in “Nature Communications”
      This review examines the evolving field of nanozymes, highlighting their unique properties and biocatalytic capabilities that challenge traditional concepts of biocatalysis, with implications for sustainable applications and potential roles in physiological processes and disease pathogenesis.
      The Role and Mechanism of Nanozymes in Burn Wound Healing

      research The Role and Mechanism of Nanozymes in Burn Wound Healing

      May 2026 in “International Journal of Nanomedicine”
      This review discusses the promising roles of nanozymes in burn wound treatment, highlighting their broad enzyme-like activities that include antibacterial, anti-inflammatory, and pro-angiogenic effects, along with advantages over traditional treatments such as reduced drug resistance and higher stability.
      ROS Balance Autoregulating Core–Shell CeO2@ZIF-8/Au Nanoplatform for Wound Repair

      research ROS Balance Autoregulating Core–Shell CeO2@ZIF-8/Au Nanoplatform for Wound Repair

      57 citations , March 2024 in “Nano-Micro Letters”
      In this study, researchers created a core-shell nanozyme, CeO2@ZIF-8/Au, which autonomously regulates ROS levels to efficiently eliminate bacteria, reduce inflammation, and promote wound healing by balancing ROS generation and scavenging in response to environmental conditions.