Novel sandwich-typed electrochemical immunosensing of C-reactive protein using multiply twinned AuPtRh nanobead chains and nitrogen-rich porous carbon nanospheres decorated with Au nanoparticles

被引:28
作者
Feng, Yi-Ge [1 ]
He, Jia-Wen [1 ]
Jiang, Lu-Yao [1 ]
Chen, Di-Nan [1 ]
Wang, Ai-Jun [1 ]
Feng, Jiu-Ju [1 ]
机构
[1] Zhejiang Normal Univ, Coll Geog & Environm Sci, Coll Chem & Life Sci, Key Lab,Minist Educ Adv Catalysis Mat, Jinhua 321004, Zhejiang, Peoples R China
关键词
C-reactive protein; Sandwich-typed immunosensor; Porous carbon nanospheres; Nanobead chains; IMMUNOASSAY; ELECTROCATALYST; AMPLIFICATION; NANOSHEETS; COMPOSITE; DOTS;
D O I
10.1016/j.snb.2022.131518
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
C-reactive protein (CRP) is commonly utilized as a significant biomarker for inflammation and infection, whose sensitive detection is of importance for early diagnosis of such diseases as a greatly reliable prediction. In this work, a novel sandwich-typed electrochemical immunosensor was built based on mono-dispersed nitrogen-rich porous carbon nanospheres decorated with Au nanoparticles (Au-N-CNSs) for such determination, coupled with multiply twinned AuPtRh nanobead chains (AuPtRh NBCs) as a label material. The AuPtRh NBCs were synthesized by a simple solvothermal method with micelles of a block copolymer poly(ethylene oxide)-b-poly (methyl methacrylate) (PEO(10500)-b-PMMA((18000))), which can enlarge the loading capacity, significantly catalyze the oxidation of potassium ferricyanide (K-3[Fe(CN)(6)]), and increase the conductivity, ultimately amplifying the signals. The obtained sandwich-typed immunosensor showed a broad linear range of 0.01 ng mL(-1)-100 mu g mL(-1), and a low limit of detection (LOD = 7.70 pg mL(-1)). This strategy offers certain constructive insights for both bioanalysis and early clinical diagnosis of inflammation or tissue damage.
引用
收藏
页数:9
相关论文
共 50 条
[11]   AuPt nanocrystals/polydopamine supported on open-pored hollow carbon nanospheres for a dual-signaling electrochemical ratiometric immunosensor towards h-FABP detection [J].
Feng, Yi-Ge ;
Zhu, Jian-Hong ;
Wang, Ai-Jun ;
Mei, Li-Ping ;
Luo, Xiliang ;
Feng, Jiu-Ju .
SENSORS AND ACTUATORS B-CHEMICAL, 2021, 346
[12]   A label-free electrochemical immunosensor based on encapsulated signal molecules in mesoporous silica-coated gold nanorods for ultrasensitive assay of procalcitonin [J].
Feng, Yi-Ge ;
Wang, Xiao-Yu ;
Wang, Zhi-Wu ;
Wang, Ai-Jun ;
Mei, Li-Ping ;
Luo, Xiliang ;
Feng, Jiu-Ju .
BIOELECTROCHEMISTRY, 2021, 140 (140)
[13]   One-Pot Preparation of Polymer-Enzyme-Metallic Nanoparticle Composite Films for High-Performance Biosensing of Glucose and Galactose [J].
Fu, Yingchun ;
Li, Penghao ;
Xie, Qingji ;
Xu, Xiahong ;
Lei, Lihong ;
Chen, Chao ;
Zou, Can ;
Deng, Wenfang ;
Yao, Shouzhuo .
ADVANCED FUNCTIONAL MATERIALS, 2009, 19 (11) :1784-1791
[14]   In-situ assembly of biocompatible core-shell hierarchical nanostructures sensitized immunosensor for microcystin-LR detection [J].
Gan, Cuifen ;
Ling, Li ;
He, Zuyu ;
Lei, Hongtao ;
Liu, Yingju .
BIOSENSORS & BIOELECTRONICS, 2016, 78 :381-389
[15]   Structure Design and Composition Engineering of Carbon-Based Nanomaterials for Lithium Energy Storage [J].
Geng, Hongya ;
Peng, Yan ;
Qu, Liangti ;
Zhang, Haijiao ;
Wu, Minghong .
ADVANCED ENERGY MATERIALS, 2020, 10 (10)
[16]   Electrochemiluminescence-Incorporated Lateral Flow Immunosensors Using Ru(bpy)32+-Labeled Gold Nanoparticles for the Full-Range Detection of Physiological C-Reactive Protein Levels [J].
Hong, Donggu ;
Kim, Kihyeun ;
Jo, Eun-Jung ;
Kim, Min-Gon .
ANALYTICAL CHEMISTRY, 2021, 93 (22) :7925-7932
[17]   Tyramine-Based Enzymatic Conjugate Repeats for Ultrasensitive Immunoassay Accompanying Tyramine Signal Amplification with Enzymatic Biocatalytic Precipitation [J].
Hou, Li ;
Tang, Yun ;
Xu, Mingdi ;
Gao, Zhuangqiang ;
Tang, Dianping .
ANALYTICAL CHEMISTRY, 2014, 86 (16) :8352-8358
[18]   An automated and portable microfluidic chemiluminescence immunoassay for quantitative detection of biomarkers [J].
Hu, Binfeng ;
Li, Juanjuan ;
Mou, Lei ;
Liu, Yong ;
Deng, Jinqi ;
Qian, Wei ;
Sun, Jiashu ;
Cha, Ruitao ;
Jiang, Xingyu .
LAB ON A CHIP, 2017, 17 (13) :2225-2234
[19]   A novel electrochemical immunosensor based on hydrogen evolution inhibition by enzymatic copper deposition on platinum nanoparticle-modified electrode [J].
Huang, Yong ;
Wen, Qian ;
Jiang, Jian-Hui ;
Shen, Guo-Li ;
Yu, Ru-Qin .
BIOSENSORS & BIOELECTRONICS, 2008, 24 (04) :600-605
[20]   Metal-organic framework derived Ni/NiO micro-particles with subtle lattice distortions for high-performance electrocatalyst and supercapacitor [J].
Jiao, Yang ;
Hong, Weizhao ;
Li, Peiying ;
Wang, Lixin ;
Chen, Gang .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2019, 244 :732-739