Colorimetric and Electrochemical Methods for the Detection of SARS-CoV-2 Main Protease by Peptide-Triggered Assembly of Gold Nanoparticles

被引:30
作者
Feng, Yunxiao [1 ]
Liu, Gang [2 ,3 ]
La, Ming [1 ]
Liu, Lin [2 ]
机构
[1] Pingdingshan Univ, Coll Chem & Chem Engn, Pingdingshan 467000, Peoples R China
[2] Anyang Normal Univ, Coll Chem & Chem Engn, Henan Prov Key Lab New Optoelect Funct Mat, Anyang 455000, Peoples R China
[3] Henan Univ Technol, Coll Chem & Chem Engn, Zhengzhou 450011, Peoples R China
基金
中国国家自然科学基金;
关键词
SARS-CoV-2 main protease; colorimetry; electrochemical impedance spectroscopy; gold nanoparticles; SIGNAL AMPLIFICATION; SENSING UNITS; ASSAY; AGGREGATION; RECOGNITION; NETWORK; SENSOR;
D O I
10.3390/molecules27030615
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
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) main protease (Mpro) has been regarded as one of the ideal targets for the development of antiviral drugs. The currently used methods for the probing of Mpro activity and the screening of its inhibitors require the use of a double-labeled peptide substrate. In this work, we suggested that the label-free peptide substrate could induce the aggregation of AuNPs through the electrostatic interactions, and the cleavage of the peptide by the Mpro inhibited the aggregation of AuNPs. This fact allowed for the visual analysis of Mpro activity by observing the color change of the AuNPs suspension. Furthermore, the co-assembly of AuNPs and peptide was achieved on the peptide-covered electrode surface. Cleavage of the peptide substrate by the Mpro limited the formation of AuNPs/peptide assembles, thus allowing for the development of a simple and sensitive electrochemical method for Mpro detection in serum samples. The change of the electrochemical signal was easily monitored by electrochemical impedance spectroscopy (EIS). The detection limits of the colorimetric and electrochemical methods are 10 and 0.1 pM, respectively. This work should be valuable for the development of effective antiviral drugs and the design of novel optical and electrical biosensors.
引用
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页数:10
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共 33 条
[1]   Optimization of gold nanoparticle-based real-time colorimetric assay of dipeptidyl peptidase IV activity [J].
Aldewachi, Hasan Saad ;
Woodroofe, Nicola ;
Turega, Simon ;
Gardiner, Philip H. E. .
TALANTA, 2017, 169 :13-19
[2]   High-Throughput Screening for Inhibitors of the SARS-CoV-2 Protease Using a FRET-Biosensor [J].
Brown, Alistair S. ;
Ackerley, David F. ;
Calcott, Mark J. .
MOLECULES, 2020, 25 (20)
[3]   A simple and general approach to assay protease activity with electrochemical technique [J].
Cao, Ya ;
Yu, Jiacui ;
Bo, Bing ;
Shu, Yongqian ;
Li, Genxi .
BIOSENSORS & BIOELECTRONICS, 2013, 45 :1-5
[4]   Gold Nanoparticle-Based Colorimetric Strategies for Chemical and Biological Sensing Applications [J].
Chang, Chia-Chen ;
Chen, Chie-Pein ;
Wu, Tzu-Heng ;
Yang, Ching-Hsu ;
Lin, Chii-Wann ;
Chen, Chen-Yu .
NANOMATERIALS, 2019, 9 (06)
[5]   Colorimetric detection of human chorionic gonadotropin using catalytic gold nanoparticles and a peptide aptamer [J].
Chang, Chia-Chen ;
Chen, Chie-Pein ;
Lee, Chung-Han ;
Chen, Chen-Yu ;
Lin, Chii-Wann .
CHEMICAL COMMUNICATIONS, 2014, 50 (92) :14443-14446
[6]   New and developing diagnostic platforms for COVID-19: A systematic review [J].
Chauhan, Nidhi ;
Soni, Shringika ;
Gupta, Abhinandan ;
Jain, Utkarsh .
EXPERT REVIEW OF MOLECULAR DIAGNOSTICS, 2020, 20 (09) :971-983
[7]   A general colorimetric method for detecting protease activity based on peptide-induced gold nanoparticle aggregation [J].
Chen, Ganchao ;
Xie, Yusheng ;
Zhang, Huatang ;
Wang, Ping ;
Cheung, Hon-Yeung ;
Yang, Mengsu ;
Sun, Hongyan .
RSC ADVANCES, 2014, 4 (13) :6560-6563
[8]   High-Throughput Fluorescent Assay for Inhibitor Screening of Proteases from RNA Viruses [J].
Cihlova, Bara ;
Huskova, Andrea ;
Boserle, Jiri ;
Nencka, Radim ;
Boura, Evzen ;
Silhan, Jan .
MOLECULES, 2021, 26 (13)
[9]   Structure-based design of antiviral drug candidates targeting the SARS-CoV-2 main protease [J].
Dai, Wenhao ;
Zhang, Bing ;
Jiang, Xia-Ming ;
Su, Haixia ;
Li, Jian ;
Zhao, Yao ;
Xie, Xiong ;
Jin, Zhenming ;
Peng, Jingjing ;
Liu, Fengjiang ;
Li, Chunpu ;
Li, You ;
Bai, Fang ;
Wang, Haofeng ;
Cheng, Xi ;
Cen, Xiaobo ;
Hu, Shulei ;
Yang, Xiuna ;
Wang, Jiang ;
Liu, Xiang ;
Xiao, Gengfu ;
Jiang, Hualiang ;
Rao, Zihe ;
Zhang, Lei-Ke ;
Xu, Yechun ;
Yang, Haitao ;
Liu, Hong .
SCIENCE, 2020, 368 (6497) :1331-+
[10]   Electrochemiluminescence sensor based on the target recognition-induced aggregation of sensing units for Hg2+ determination [J].
Gu, Ying ;
Jiang, Ziye ;
Ren, Dabing ;
Shang, Ying ;
Hu, Yongdan ;
Yi, Lunzhao .
SENSORS AND ACTUATORS B-CHEMICAL, 2021, 337