Synergistic catalysis and detection of hydrogen peroxide based on a 3D-dimensional molybdenum disulfide interspersed carbon nanotubes nanonetwork immobilized chloroperoxidase biosensor

被引:2
作者
Zhu, Xuefang [1 ]
He, Meng [1 ]
Zhang, Jing [1 ]
Jiang, Yucheng [1 ]
机构
[1] Shaanxi Normal Univ, Sch Chem & Chem Engn, Xian 710119, Peoples R China
基金
中国国家自然科学基金;
关键词
Detection of hydrogen peroxide; Chloroperoxidase; Ionic liquid; Electroenzymatic synergistic catalysis; Biosensor; GRAPHENE; SENSORS;
D O I
10.1016/j.bioelechem.2023.108507
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Enzyme-based electrochemical biosensors are promising for a wide range of applications due to their unique specificity and high sensitivity. In this work, we present a novel enzyme bioelectrode for the sensing of hydrogen peroxide (H2O2). The molybdenum disulfide nanoflowers (MoS2) is self-assembled on carboxylated carbon nanotubes (CNT) to form a three-dimensional conductive network (3D-CNT@MoS2), which is modified with 1-ethyl-3-methylimidazolium bromide (ILEMB), and followed by anchoring chloroperoxidase (CPO) onto the nanocomposite (3D-CNT@MoS2/ILEMB) through covalent binding to form a bioconjugate (3D-CNT@MoS2/ ILEMB/CPO). The ILEMB modified 3D-CNT@MoS2/ILEMB has good hydrophilicity and conductivity, which not only provides a suitable microenvironment for the immobilization of CPO but also facilitates the direct electron transfer (DET) of CPO at the electrode. The 3D-CNT@MoS2/ILEMB/CPO bioconjugate modified electrode has a high catalytic efficiency for H2O2. Through electroenzymatic synergistic catalysis for H2O2 detection by 3D-CNT@MoS2/ILEMB/CPO-GCE, a wide detection range of 0.2 mu mol & sdot;L-1 to 997 mu mol & sdot;L-1 and a low detection limit of 0.097 mu mol center dot L-1 with high sensitivity of 1050 mu A & sdot;mmol & sdot;L-1 & sdot;cm-2 were achieved. Additionally, the 3D-CNT@MoS2/ILEMB/CPO-GCE displayed exceptional stability, selectivity, and reproducibility. Furthermore, 3D-CNT@MoS2/ILEMB/CPO-GCE is suitable for sensing of H2O2 in human urine s with good recovery, suggesting its potential application for the detection of H2O2 in biomedical field.
引用
收藏
页数:8
相关论文
共 47 条
[21]   Frontiers in electrochemical enzyme based biosensors for food and drug analysis [J].
Kurbanoglu, Sevinc ;
Erkmen, Cem ;
Uslu, Bengi .
TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2020, 124
[22]   Polymer-coated carbon nanotube hybrids with functional peptides for gene delivery into plant mitochondria [J].
Law, Simon Sau Yin ;
Liou, Geoffrey ;
Nagai, Yukiko ;
Gimenez-Dejoz, Joan ;
Tateishi, Ayaka ;
Tsuchiya, Kousuke ;
Kodama, Yutaka ;
Fujigaya, Tsuyohiko ;
Numata, Keiji .
NATURE COMMUNICATIONS, 2022, 13 (01)
[23]   Photobiocatalysis: Activating Redox Enzymes by Direct or Indirect Transfer of Photoinduced Electrons [J].
Lee, Sahng Ha ;
Choi, Da Som ;
Kuk, Su Keun ;
Park, Chan Beum .
ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2018, 57 (27) :7958-7985
[24]   A perylenediimide modified SiO2@TiO2 yolk-shell light-responsive nanozyme: Improved peroxidase-like activity for H2O2 and sarcosine sensing [J].
Liu, Qi ;
Cao, Shoufu ;
Sun, Qiqi ;
Xing, Chuanwang ;
Gao, Wen ;
Lu, Xiaoqing ;
Li, Xiyou ;
Yang, Guangwu ;
Yu, Sirong ;
Chen, Yanli .
JOURNAL OF HAZARDOUS MATERIALS, 2022, 436
[25]   Colorimetric two-dimensional photonic crystal biosensors for label-free detection of hydrogen peroxide [J].
Liu, Ruixiang ;
Cai, Zhongyu ;
Zhang, Qingsong ;
Yuan, Heng ;
Zhang, Guanglei ;
Yang, De'an .
SENSORS AND ACTUATORS B-CHEMICAL, 2022, 354
[26]   High-activity daisy-like zeolitic imidazolate framework-67/reduced grapheme oxide-based colorimetric biosensor for sensitive detection of hydrogen peroxide [J].
Lu, Dongxiao ;
Li, Jinhua ;
Wu, Zhe ;
Yuan, Lin ;
Fang, Wenhui ;
Zou, Peng ;
Ma, Li ;
Wang, Xiaojun .
JOURNAL OF COLLOID AND INTERFACE SCIENCE, 2022, 608 :3069-3078
[27]  
Lu ZW, 2021, J HAZARD MATER, V402, DOI [10.1016/j.hazmat.2020.123774, 10.1016/j.jhazmat.2020.123774]
[28]   Real-time quantification of hydrogen peroxide production in living cells using NiCo2S4@CoS2 heterostructure [J].
Mani, Veerappan ;
Shanthi, Selvaraj ;
Peng, Tie-Kun ;
Lin, Hsin-Yi ;
Ikeda, Hiroya ;
Hayakawa, Yasuhiro ;
Ponnusamy, Suru ;
Muthamizhchelvan, Chellamuthu ;
Huang, Sheng-Tung .
SENSORS AND ACTUATORS B-CHEMICAL, 2019, 287 :124-130
[29]   Flexible fiber-shaped non-enzymatic sensors with a graphene-metal heterostructure based on graphene fibres decorated with gold nanosheets [J].
Peng, Yu ;
Lin, Deqing ;
Gooding, J. Justin ;
Xue, Yuhua ;
Dai, Liming .
CARBON, 2018, 136 :329-336
[30]  
Robertson G.L., 2016, Encyclopedia Dairy Sci., DOI [10.1016/b978-0-08-100596-5.00810-6, DOI 10.1016/B978-0-08-100596-5.00810-6]