Development of Carbon-Based Nano-Composite Materials for Direct Electron Transfer Based Biosensors

被引:9
作者
Sanzo, Gabriella [1 ]
Tortolini, Cristina [1 ]
Antiochia, Riccarda [1 ]
Favero, Gabriele [1 ]
Mazzei, Franco [1 ]
机构
[1] Univ Roma La Sapienza, Dept Chem & Drug Technol, I-00185 Rome, Italy
关键词
Carbon Nanotubes; Direct Electron Transfer; Heme Proteins; Immobilization; Enzymatic Biosensor; DIRECT ELECTROCHEMISTRY; DIRECT VOLTAMMETRY; GLUCOSE-OXIDASE; SOL-GEL; NANOTUBES; CATALASE; ELECTROCATALYSIS; PEROXIDASE; HYDROGEL; ENZYMES;
D O I
10.1166/jnn.2015.10207
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Nation, an ion exchange polymer that is very resistant to chemical attack, even by strong oxidant at high temperatures, has found great increasing use as a film material; however, its use as immobilizing agent in third-generation biosensors is hindered due to the low rate of charge transfer in the pure Nafion film. In this work we showed that the use of functionalized multi-walled carbon nanotubes Nafion/MWCNTs composite film for modification of the carbon-based electrode surfaces would increase the charge transfer rate greatly; the composite has proven to efficiently immobilize two different heme proteins (catalase and cytochrome c) and to enhance the electrochemical performances of several carbon electrode materials (glassy carbon, mesoporous graphite, graphite and graphene) either used as classical electrodes or screen printed ones. The electrochemical signal of both redox proteins becomes more reversible and the electron transfer kinetic constant increases. At the same time the biological activity is maintained indicating that the immobilization procedure allows the proteins to retain a native-like structure.
引用
收藏
页码:3423 / 3428
页数:6
相关论文
共 33 条
[1]   Alcohol biosensor based on the immobilization of meldola blue and alcohol dehydrogenase into a carbon nanotube paste electrode [J].
Antiochia, R ;
Lavagnini, I .
ANALYTICAL LETTERS, 2006, 39 (08) :1643-1655
[2]   Amperometric mediated carbon nanotube paste biosensor for fructose determination [J].
Antiochia, R ;
Lavagnini, I ;
Magno, F .
ANALYTICAL LETTERS, 2004, 37 (08) :1657-1669
[3]   Carbon nanotubes - the route toward applications [J].
Baughman, RH ;
Zakhidov, AA ;
de Heer, WA .
SCIENCE, 2002, 297 (5582) :787-792
[4]   Comparison of the direct electrochemistry of myoglobin and hemoglobin films and their bioelectrocatalytic properties [J].
Chen, SM ;
Tseng, CC .
JOURNAL OF ELECTROANALYTICAL CHEMISTRY, 2005, 575 (01) :147-160
[5]   Carbon nanotubes: Synthesis, integration, and properties [J].
Dai, HJ .
ACCOUNTS OF CHEMICAL RESEARCH, 2002, 35 (12) :1035-1044
[6]   Electron-transfer kinetics of covalently attached cytochrome c/SAM/Au electrode assemblies [J].
Davis, Kathryn L. ;
Drews, Brianna J. ;
Yue, Hongjun ;
Waldeck, David H. ;
Knorr, Kathryn ;
Clark, Rose A. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2008, 112 (16) :6571-6576
[7]   Self-assembly of S-layer-enveloped cytochrome c polyelectrolyte multilayers [J].
Dronov, Roman ;
Kurth, Dirk G. ;
Moehwald, Helmuth ;
Scheller, Frieder W. ;
Friedmann, Jacqueline ;
Pum, Dietmar ;
Sleytr, Uwe B. ;
Lisdat, Fred .
LANGMUIR, 2008, 24 (16) :8779-8784
[8]   Direct electrochemistry and electrocatalysis of heme proteins immobilized on gold nanoparticles stabilized by chitosan [J].
Feng, JJ ;
Zhao, G ;
Xu, JJ ;
Chen, HY .
ANALYTICAL BIOCHEMISTRY, 2005, 342 (02) :280-286
[9]   Direct electron transfer of heme- and molybdopterin cofactor-containing chicken liver sulfite oxidase on alkanethiol-modified gold electrodes [J].
Ferapontova, EE ;
Ruzgas, T ;
Gorton, L .
ANALYTICAL CHEMISTRY, 2003, 75 (18) :4841-4850
[10]   Scleroglucan-Borax Hydrogel: A Flexible Tool for Redox Protein Immobilization [J].
Frasconi, Marco ;
Rea, Sara ;
Matricardi, Pietro ;
Favero, Gabriele ;
Mazzei, Franco .
LANGMUIR, 2009, 25 (18) :11097-11104