Multiactivity of Nanozyme Liposome Regulates the Homeostasis of Biochemical Microenvironment

Y Yuanhong Min (Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China) Y Yinhua Qin (Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China) H Haiyan Yin T Ting Gao (Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education; School of Chemistry and Materials Science) X Xiaowen Guan (Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China) X Xiaohang Qu (Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China) Y Yong Liu J Ju Tan (Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China) J JianHua Xu Y Yonghong Fan (Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China) C Chuhong Zhu (School of Materials Science and Engineering Anhui University Hefei P.R. China) Y Youqian Xu (Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China)

Abstract

Abstract In living systems, cascade reactions involving multiple enzymes, critical for regulating the biochemical microenvironment's homeostasis, are essential to transplantation remodeling. However, for ready‐to‐use purposes, designing and constructing therapeutic liposomes that replicate natural cell functions during the initial transplantation phase remains a significant challenge in synthetic biology for tissue engineering. Herein, we developed a biomimetic liposome with multienzymatic nanozyme activity to regulate proinflammatory factors induced by exogenous implants. The liposomes were fabricated through the self‐assembly of artificial membranes on CeO 2 nanoparticles (NPs). These membranes, featuring a negatively charged surface analogous to endothelial cell (EC) membranes, effectively attenuate blood component adhesion and aggregation. The CeO 2 nanozyme not only hydrolyzes adenosine triphosphate/adenosine diphosphate (ATP/ADP) to adenosine monophosphate (AMP), reducing subsequent platelet aggregation, but also regulates biochemical microenvironment homeostasis, thereby promoting tissue regeneration. This work advances the development of cell‐like entities capable of modulating signaling communication between living and abiotic interfaces.

Article Details

Volume / Issue Vol. 64, Issue 34
Published August 18, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (12)

Y

Yuanhong Min

Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China

Y

Yinhua Qin

Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China

H

Haiyan Yin

T

Ting Gao

Key Laboratory of Functional Inorganic Material Chemistry, Ministry of Education; School of Chemistry and Materials Science

X

Xiaowen Guan

Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China

X

Xiaohang Qu

Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China

Y

Yong Liu

J

Ju Tan

Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China

J

JianHua Xu

Y

Yonghong Fan

Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China

C

Chuhong Zhu

School of Materials Science and Engineering Anhui University Hefei P.R. China

Y

Youqian Xu

Department of Anatomy Third Military Medical University Chongqing 400038 P. R. China