Enhancement of the Peroxidase-Like Activity of Iodine-Capped Gold Nanoparticles for the Colorimetric Detection of Biothiols

被引:16
作者
Chang, Chia-Chen [1 ]
Hsu, Tsz-Lian [2 ,3 ]
Chen, Chie-Pein [2 ,3 ]
Chen, Chen-Yu [2 ,4 ]
机构
[1] Chang Gung Univ, Dept Med Biotechnol & Lab Sci, Taoyuan 333, Taiwan
[2] Mackay Mem Hosp, Dept Obstet & Gynecol, Taipei 104, Taiwan
[3] MacKay Mem Hosp, Dept Med Res, New Taipei 251, Taiwan
[4] Mackay Med Coll, Dept Med, New Taipei 252, Taiwan
来源
BIOSENSORS-BASEL | 2020年 / 10卷 / 09期
关键词
colorimetric assay; catalytic gold nanoparticle; iodine; peroxidase-like activity; NANOZYMES; CYSTEINE; HOMOCYSTEINE; RADIOTHERAPY; BIOSENSOR; SENSOR; ACID; ION;
D O I
10.3390/bios10090113
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A colorimetric assay was developed for the detection of biothiols, based on the peroxidase-like activity of iodine-capped gold nanoparticles (AuNPs). These AuNPs show a synergetic effect in the form of peroxidase-mimicking activity at the interface of AuNPs, while free AuNPs and iodine alone have weak catalytic properties. Thus, iodine-capped AuNPs possess good intrinsic enzymatic activity and trigger the oxidation of 3,3',5,5'-tetramethylbenzidine (TMB), leading to a change in color from colorless to yellow. When added to solution, biothiols, such as cysteine, strongly bind to the interface of AuNPs via gold-thiol bonds, inhibiting the catalytic activity of AuNPs, resulting in a decrease in oxidized TMB. Using this strategy, cysteine could be linearly determined, at a wide range of concentrations (0.5 to 20 mu M), with a detection limit of 0.5 mu M using UV-Vis spectroscopy. This method was applied for the detection of cysteine in diluted human urine.
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页数:10
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共 59 条
[11]   Surface plasmon resonance detection of silver ions and cysteine using DNA intercalator-based amplification [J].
Chang, Chia-Chen ;
Lin, Shenhsiung ;
Wei, Shih-Chung ;
Chu-Su, Yu ;
Lin, Chii-Wann .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2012, 402 (09) :2827-2835
[12]   Highly Selective Fluorescent Sensing of Phosphite through Recovery of Poisoned Nickel Oxide Nanozyme [J].
Chang, Yangyang ;
Liu, Meng ;
Liu, Juewen .
ANALYTICAL CHEMISTRY, 2020, 92 (04) :3118-3124
[13]   Fluorescence turn-on detection of iodide, iodate and total iodine using fluorescein-5-isothiocyanate-modified gold nanoparticles [J].
Chen, Yi-Ming ;
Cheng, Tian-Lu ;
Tseng, Wei-Lung .
ANALYST, 2009, 134 (10) :2106-2112
[14]   Fabrication of oxidase-like polyaniline-MnO2 hybrid nanowires and their sensitive colorimetric detection of sulfite and ascorbic acid [J].
Chi, Maoqiang ;
Zhu, Yun ;
Jing, Liwei ;
Wang, Ce ;
Lu, Xiaofeng .
TALANTA, 2019, 191 :171-179
[15]   Cell phone based colorimetric analysis for point-of-care settings [J].
Coleman, Benjamin ;
Coarsey, Chad ;
Asghar, Waseem .
ANALYST, 2019, 144 (06) :1935-1947
[16]   Emerging Biomedical Applications of Enzyme-Like Catalytic Nanomaterials [J].
Cormode, David P. ;
Gao, Lizeng ;
Koo, Hyun .
TRENDS IN BIOTECHNOLOGY, 2018, 36 (01) :15-29
[17]   Development of a new fluorescent probe for cysteine detection in processed food samples [J].
Das, Sujoy ;
Ghosh, Ayndrila ;
Kundu, Shampa ;
Saha, Shrabani ;
Sarkar, Himadri Sekhar ;
Sahoo, Prithidipa .
ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2019, 411 (23) :6203-6212
[18]   Redox Recycling-Triggered Peroxidase-Like Activity Enhancement of Bare Gold Nanoparticles for Ultrasensitive Colorimetric Detection of Rare-Earth Ce3+ Ion [J].
Deng, Hao-Hua ;
Luo, Bang-Yue ;
He, Shao-Bin ;
Chen, Rui-Ting ;
Lin, Zhen ;
Peng, Hua-Ping ;
Xia, Xing-Hua ;
Chen, Wei .
ANALYTICAL CHEMISTRY, 2019, 91 (06) :4039-4046
[19]   Surface plasmon resonance additivity of gold nanoparticles for colorimetric identification of cysteine and homocysteine in biological fluids [J].
Gao, Huiling ;
Shen, Weiwei ;
Lu, Chao ;
Liang, Hao ;
Yuan, Qipeng .
TALANTA, 2013, 115 :1-5
[20]   Intrinsic peroxidase-like activity of ferromagnetic nanoparticles [J].
Gao, Lizeng ;
Zhuang, Jie ;
Nie, Leng ;
Zhang, Jinbin ;
Zhang, Yu ;
Gu, Ning ;
Wang, Taihong ;
Feng, Jing ;
Yang, Dongling ;
Perrett, Sarah ;
Yan, Xiyun .
NATURE NANOTECHNOLOGY, 2007, 2 (09) :577-583