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Tumor Microenvironment Responsive Single-Atom Nanozymes for Enhanced Antitumor Therapy.

Mengyu ChangZhiyao HouMan WangChunxia LiAbdulaziz A Al KheraifJun Lin
Published in: Chemistry (Weinheim an der Bergstrasse, Germany) (2022)
Single-atom nanozymes (SAzymes) with specific response to the unique tumor microenvironment (TME) feature providing 100 % metal atoms utilization for high-efficient enzyme-catalyzed therapy and accurate template for the study of therapeutic mechanisms. In this review, we first introduce the various synthetic strategies of SAzymes, and the TME-responsive SAzymes activities. Next, the TME-responsive enhanced antitumor therapeutic approaches based on the enzymatic activities of SAzymes are summarized, and the corresponding therapy mechanisms are elaborated. Subsequently, a concise but concentrated summary, and the challenges and opportunities for the future design and engineering of SAzyme are outlined. As a new discipline, SAzymes have vast space for development in enhanced antitumor therapy. This timely review provides guidance and constructive suggestions for the future of SAzymes.
Keyphrases
  • cancer therapy
  • stem cells
  • molecular dynamics
  • drug delivery
  • mass spectrometry
  • nitric oxide
  • deep learning
  • mesenchymal stem cells
  • cell therapy
  • bone marrow
  • electron transfer
  • replacement therapy
  • molecularly imprinted