Ultrasmall Magneto-chiral Cobalt Hydroxide Nanoparticles Enable Dynamic Detection of Reactive Oxygen Species in Vivo

被引:53
|
作者
Li, Chen [1 ]
Li, Si [1 ]
Zhao, Jing [1 ]
Sun, Maozhong [1 ]
Wang, Weiwei [1 ]
Lu, Meiru [1 ]
Qu, Aihua [1 ]
Hao, Changlong [1 ]
Chen, Chen [1 ]
Xu, Chuanlai [1 ]
Kuang, Hua [1 ]
Xu, Liguang [1 ]
机构
[1] Jiangnan Univ, Sch Food Sci & Technol, State Key Lab Food Sci & Technol, Int Joint Res Lab Biointerface & Biodetect, Wuxi 214122, Jiangsu, Peoples R China
基金
中国国家自然科学基金;
关键词
PROBE; GOLD; DNA;
D O I
10.1021/jacs.1c09986
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Biological application of chiral nanoparticles (NPs) has aroused enormous levels of attention over recent years. Here, we synthesized magneto-chiral cobalt hydroxide (Co(OH)(2)) NPs that exhibited strong chiroptical and unique magnetic properties and applied these NPs to detect and monitor reactive oxygen species (ROS) in living cells and in vivo. Circular dichroism (CD) and magnetic resonance imaging (MRI) signals of the magneto-chiral Co(OH)(2) NPs exhibited a wide intracellular ROS detection range from 0.673 to 612.971 pmol/10(6) cells with corresponding limits of detection (LOD) at 0.087 and 0.179 pmol/10(6) cells, far below that of currently available probes; the LOD for d-aspartic acid coated Co(OH)(2) NPs (d-Co(OH)(2) NPs) was 5.7 times lower than that for l-aspartic acid coated Co(OH)(2) NPs (l-Co(OH)2 NPs) based on the CD signals. In addition, d-Co(OH)(2) NPs also exhibited dynamic ROS monitoring ability. The high levels of selectivity and sensitivity to ROS in complex biological environments can be attributed to the Co2+ oxidation reaction on the surface of the NPs. Furthermore, magneto-chiral Co(OH)(2) NPs were able to quantify the levels of ROS in living mice by fluorescence and MRI signals. Collectively, these results reveal that magneto-chiral Co(OH)(2) NPs exhibit a remarkable ability to quantify ROS levels in living organisms, and could therefore provide new tools for exploring chiral nanomaterials as a potential biosensor to investigate biological events.
引用
收藏
页码:1580 / 1588
页数:9
相关论文
共 50 条
  • [21] Horseradish peroxidase embedded in polyacrylamide nanoparticles enables optical detection of reactive oxygen species
    Poulsen, Allan K.
    Scharff-Poulsen, Anne Marie
    Olsen, Lars F.
    ANALYTICAL BIOCHEMISTRY, 2007, 366 (01) : 29 - 36
  • [22] Ultrasmall copper-based nanoparticles for reactive oxygen species scavenging and alleviation of inflammation related diseases (vol 11, 2788, 2020)
    Liu, Tengfei
    Xiao, Bowen
    Xiang, Fei
    Tan, Jianglin
    Chen, Zhuo
    Zhang, Xiaorong
    Wu, Chengzhou
    Mao, Zhengwei
    Luo, Gaoxing
    Chen, Xiaoyuan
    Deng, Jun
    NATURE COMMUNICATIONS, 2024, 15 (01)
  • [23] Chiral Core-Shell Upconversion Nanoparticle@MOF Nanoassemblies for Quantification and Bioimaging of Reactive Oxygen Species in Vivo
    Hao, Changlong
    Wu, Xiaoling
    Sun, Maozhong
    Zhang, Hongyu
    Yuan, Aimeng
    Xu, Liguang
    Xu, Chuanlai
    Kuang, Hua
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2019, 141 (49) : 19373 - 19378
  • [24] In vivo detection of intrinsic reactive oxygen species using acyl-protected hydroxylamine in puromycin nephrosis
    Ueda, Atsushi
    Hirayama, Aki
    Nagase, Sohji
    Inoue, Mariko
    Oteki, Takaaki
    Aoyama, Masaaki
    Yokoyama, Hidekatsu
    FREE RADICAL RESEARCH, 2007, 41 (07) : 823 - 828
  • [25] Sensitive and Selective Dual-Mode Responses to Reactive Oxygen Species by Chiral Manganese Dioxide Nanoparticles for Antiaging Skin
    Qu, Aihua
    Chen, Qiwen
    Sun, Maozhong
    Xu, Liguang
    Hao, Changlong
    Xu, Chuanlai
    Kuang, Hua
    ADVANCED MATERIALS, 2024, 36 (05)
  • [26] Reactive oxygen species-scavenging nanoparticles coated with chondroitin sulfate protect cartilage against osteoarthritis in vivo
    Zhaoyi Wang
    Hao Xiong
    Zihe Zhai
    Yuejun Yao
    Tong Zhou
    Haolan Zhang
    Cunyi Fan
    Changyou Gao
    Nano Research, 2023, 16 (2) : 2786 - 2797
  • [27] Upconversion nanoparticles-CuMnO2 nanoassemblies for NIR-excited imaging of reactive oxygen species in vivo
    Yan, Shanshu
    Xing, Gaoyuan
    Yuan, Xiangyang
    Cui, Endian
    Ji, Kaixin
    Yang, Xing
    Su, Jiahao
    Mara, Dimitrije
    Tang, Jianfeng
    Zhao, Yanan
    Hu, Jie
    Liu, Jing
    JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2025, 677 : 666 - 674
  • [28] Reactive oxygen species-scavenging nanoparticles coated with chondroitin sulfate protect cartilage against osteoarthritis in vivo
    Wang, Zhaoyi
    Xiong, Hao
    Zhai, Zihe
    Yao, Yuejun
    Zhou, Tong
    Zhang, Haolan
    Fan, Cunyi
    Gao, Changyou
    NANO RESEARCH, 2023, 16 (02) : 2786 - 2797
  • [29] Encapsulation of ionic nanoparticles produces reactive oxygen species (ROS)-responsive microgel useful for molecular detection
    Liu, Yang
    Wang, Yu-Min
    Sedano, Sabrina
    Jiang, Qiaoshi
    Duan, Yaokai
    Shen, Wen
    Jiang, Jian-Hui
    Zhong, Wenwan
    CHEMICAL COMMUNICATIONS, 2018, 54 (34) : 4329 - 4332
  • [30] A reporter system for the individual detection of hydrogen peroxide and singlet oxygen:: its use for the assay of reactive oxygen species produced in vivo
    Shao, Ning
    Krieger-Liszkay, Anja
    Schroda, Michael
    Beck, Christoph F.
    PLANT JOURNAL, 2007, 50 (03): : 475 - 487