Antioxidant activities of metal single-atom nanozymes in biomedicine

被引:1
|
作者
Zeng, Qingdong [1 ,2 ]
Zhong, Huihai [2 ]
Liao, Jiahao [2 ]
Huo, Qin [2 ]
Miao, Beiping [2 ]
Zeng, Li [2 ]
Zhang, Bin [2 ]
Nie, Guohui [2 ]
机构
[1] Univ South China, Shenzhen Peoples Hosp 2, Heng Yang Med Sch, Grad Collaborat Training Base, Hengyang 421001, Hunan, Peoples R China
[2] Shenzhen Univ, Shenzhen Key Lab Nanozymes & Translat Canc Res, Hlth Sci Ctr, Inst Translat Med,Shenzhen Peoples Hosp 2,Dept Oto, Shenzhen 518035, Peoples R China
基金
中国国家自然科学基金;
关键词
CATALYSTS;
D O I
10.1039/d4bm00978a
中图分类号
TB3 [工程材料学]; R318.08 [生物材料学];
学科分类号
0805 ; 080501 ; 080502 ;
摘要
Nanozymes are a class of nanomaterials with enzyme-like activity that can mimic the catalytic properties of natural enzymes. The small size, high catalytic activity, and strong stability of nanozymes compared to those of natural enzymes allow them to not only exist in a wide temperature and pH range but also maintain stability in complex environments. Recently developed single-atom nanozymes have metal active sites composed of a single metal atom fixed to a carrier. These metal atoms can act as independent catalytically active centers. Metal single-atom nanozymes have a homogeneous single-atom structure and a suitable coordination environment for stronger catalytic activity and specificity than traditional nanozymes. The antioxidant metal single-atom nanozymes with the ability of removing reactive oxygen species (ROS) can simulate superoxidase dismutase, catalase, and glutathione peroxidase to show different effects in vivo. Furthermore, due to the similar structure of antioxidant enzymes, a metal single-atom nanozyme often has multiple antioxidant activities, and this synergistic effect can more efficiently remove ROS related to oxidative stress. The versatility of single-atom nanozymes encompasses a broad spectrum of biomedical applications such as anti-oxidation, anti-infection, immunomodulatory, biosensing, bioimaging, and tumor therapy applications. Herein, the nervous, circulatory, digestive, motor, immune, and sensory systems are considered in order to demonstrate the role of metal single-atom nanozymes in biomedical antioxidants. Atomically dispersed metal catalysts can simulate the activity of various antioxidant enzymes such as SOD, CAT, and GPx, and are used to treat different diseases related to oxidative stress.
引用
收藏
页码:5150 / 5163
页数:14
相关论文
共 50 条
  • [11] Single-atom nanozymes and environmental catalysis: A perspective
    Kandathil, Vishal
    Patil, Siddappa A.
    ADVANCES IN COLLOID AND INTERFACE SCIENCE, 2021, 294
  • [12] Single-atom nanozymes: From bench to bedside
    Chanyuan Jin
    Sanjun Fan
    Zechao Zhuang
    Yongsheng Zhou
    Nano Research, 2023, 16 (2) : 1992 - 2002
  • [13] When Nanozymes Meet Single-Atom Catalysis
    Jiao, Lei
    Yan, Hongye
    Wu, Yu
    Gu, Wenling
    Zhu, Chengzhou
    Du, Dan
    Lin, Yuehe
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2020, 59 (07) : 2565 - 2576
  • [14] Advancements and Applications of Single-Atom Nanozymes in Sensing Analysis
    Zhang, Huiyun
    Zhang, Shouting
    Zhang, Zhicheng
    CHEMOSENSORS, 2024, 12 (10)
  • [15] Design of high performance nanozymes: a single-atom strategy
    Shichao Lin
    Hui Wei
    Science China(Life Sciences), 2019, 62 (05) : 710 - 712
  • [16] Engineering Single-Atom Nanozymes for Catalytic Biomedical Applications
    Zhu, Yang
    Liao, Yaxin
    Zou, Jianhua
    Cheng, Junjie
    Pan, Yuanbo
    Lin, Lisen
    Chen, Xiaoyuan
    SMALL, 2023, 19 (30)
  • [17] Emerging single-atom nanozymes for catalytic biomedical uses
    Cai, Shuangfei
    Zhang, Wei
    Yang, Rong
    NANO RESEARCH, 2023, 16 (12) : 13056 - 13076
  • [18] Design of high performance nanozymes: a single-atom strategy
    Lin, Shichao
    Wei, Hui
    SCIENCE CHINA-LIFE SCIENCES, 2019, 62 (05) : 710 - 712
  • [19] Emerging single-atom nanozymes for catalytic biomedical uses
    Shuangfei Cai
    Wei Zhang
    Rong Yang
    Nano Research, 2023, 16 : 13056 - 13076
  • [20] Burgeoning Single-Atom Nanozymes for Efficient Bacterial Elimination
    Shi, Tongyu
    Cui, Yuanyuan
    Yuan, Huanxiang
    Qi, Ruilian
    Yu, Yu
    NANOMATERIALS, 2023, 13 (20)