TY - JOUR
T1 - Single-Atom Nanozymes for Catalytic Therapy
T2 - Recent Advances and Challenges
AU - He, Weiyi
AU - Wu, Jiahao
AU - Liu, Jianli
AU - Li, Jing
N1 - Publisher Copyright:
© 2024 Wiley-VCH GmbH.
PY - 2024/4/18
Y1 - 2024/4/18
N2 - As a powerful tool, nanozyme catalysts broaden the avenues to implement bio-inspired solutions for addressing many important concerns, covering energy, healthcare, the environment, and more. Recent endeavors, characterized by atomic precision, have enabled extensive exploration of single-atom nanozymes (SAzymes) with high catalytic activity, superior substrate selectivity, and integrated multifunctionalities, thus becoming an emerging field that bridges nanotechnology and biology. This review provides a brief outline of the progress and summarizes the latest research advances regarding SAzymes in biomedical therapeutics, mainly including tumor therapy, wound antibacterial therapy, and tissue anti-inflammatory therapy, with a focus on their prototypical synthesis and therapeutic catalytic mechanisms. Finally, current challenges and future perspectives for the engineering of advanced SAzymes are also discussed and outlooked. It is anticipated that this review of the important area shall provide useful guidance for catalytic therapy.
AB - As a powerful tool, nanozyme catalysts broaden the avenues to implement bio-inspired solutions for addressing many important concerns, covering energy, healthcare, the environment, and more. Recent endeavors, characterized by atomic precision, have enabled extensive exploration of single-atom nanozymes (SAzymes) with high catalytic activity, superior substrate selectivity, and integrated multifunctionalities, thus becoming an emerging field that bridges nanotechnology and biology. This review provides a brief outline of the progress and summarizes the latest research advances regarding SAzymes in biomedical therapeutics, mainly including tumor therapy, wound antibacterial therapy, and tissue anti-inflammatory therapy, with a focus on their prototypical synthesis and therapeutic catalytic mechanisms. Finally, current challenges and future perspectives for the engineering of advanced SAzymes are also discussed and outlooked. It is anticipated that this review of the important area shall provide useful guidance for catalytic therapy.
KW - biomedical application
KW - catalytic therapy
KW - enzyme-like activity
KW - single-atom nanozyme
KW - synthetic strategy
UR - http://www.scopus.com/inward/record.url?scp=85181530088&partnerID=8YFLogxK
U2 - 10.1002/adfm.202312116
DO - 10.1002/adfm.202312116
M3 - Review article
AN - SCOPUS:85181530088
SN - 1616-301X
VL - 34
JO - Advanced Functional Materials
JF - Advanced Functional Materials
IS - 16
M1 - 2312116
ER -