Literature DB >> 21034805

Advances in carbon nanotube based electrochemical sensors for bioanalytical applications.

Sandeep Kumar Vashist1, Dan Zheng, Khalid Al-Rubeaan, John H T Luong, Fwu-Shan Sheu.   

Abstract

Electrochemical (EC) sensing approaches have exploited the use of carbon nanotubes (CNTs) as electrode materials owing to their unique structures and properties to provide strong electrocatalytic activity with minimal surface fouling. Nanofabrication and device integration technologies have emerged along with significant advances in the synthesis, purification, conjugation and biofunctionalization of CNTs. Such combined efforts have contributed towards the rapid development of CNT-based sensors for a plethora of important analytes with improved detection sensitivity and selectivity. The use of CNTs opens an opportunity for the direct electron transfer between the enzyme and the active electrode area. Of particular interest are also excellent electrocatalytic activities of CNTs on the redox reaction of hydrogen peroxide and nicotinamide adenine dinucleotide, two major by-products of enzymatic reactions. This excellent electrocatalysis holds a promising future for the simple design and implementation of on-site biosensors for oxidases and dehydrogenases with enhanced selectivity. To date, the use of an anti-interference layer or an artificial electron mediator is critically needed to circumvent unwanted endogenous electroactive species. Such interfering species are effectively suppressed by using CNT based electrodes since the oxidation of NADH, thiols, hydrogen peroxide, etc. by CNTs can be performed at low potentials. Nevertheless, the major future challenges for the development of CNT-EC sensors include miniaturization, optimization and simplification of the procedure for fabricating CNT based electrodes with minimal non-specific binding, high sensitivity and rapid response followed by their extensive validation using "real world" samples. A high resistance to electrode fouling and selectivity are the two key pending issues for the application of CNT-based biosensors in clinical chemistry, food quality and control, waste water treatment and bioprocessing.
Copyright © 2010 Elsevier Inc. All rights reserved.

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Year:  2010        PMID: 21034805     DOI: 10.1016/j.biotechadv.2010.10.002

Source DB:  PubMed          Journal:  Biotechnol Adv        ISSN: 0734-9750            Impact factor:   14.227


  35 in total

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Journal:  Biofabrication       Date:  2013-07-23       Impact factor: 9.954

3.  Carbon Nanotube Chemical Sensors.

Authors:  Vera Schroeder; Suchol Savagatrup; Maggie He; Sibo Lin; Timothy M Swager
Journal:  Chem Rev       Date:  2018-09-18       Impact factor: 60.622

Review 4.  Mechanism and Application of Carbon Nanotube Sensors in SF6 Decomposed Production Detection: a Review.

Authors:  Xiaoxing Zhang; Hao Cui; Yingang Gui; Ju Tang
Journal:  Nanoscale Res Lett       Date:  2017-03-09       Impact factor: 4.703

5.  A comparative study of different protein immobilization methods for the construction of an efficient nano-structured lactate oxidase-SWCNT-biosensor.

Authors:  Miraida Pagán; Dámaris Suazo; Nicole Del Toro; Kai Griebenow
Journal:  Biosens Bioelectron       Date:  2014-09-03       Impact factor: 10.618

Review 6.  Biosensors and Sensing Systems for Rapid Analysis of Phenolic Compounds from Plants: A Comprehensive Review.

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Review 7.  Gelatin Methacrylate (GelMA)-Based Hydrogels for Cell Transplantation: an Effective Strategy for Tissue Engineering.

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8.  Modelling carbon nanotubes-based mediatorless biosensor.

Authors:  Romas Baronas; Juozas Kulys; Karolis Petrauskas; Julija Razumiene
Journal:  Sensors (Basel)       Date:  2012-07-03       Impact factor: 3.576

9.  Highly efficient bienzyme functionalized nanocomposite-based microfluidics biosensor platform for biomedical application.

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Journal:  Sci Rep       Date:  2013-09-27       Impact factor: 4.379

Review 10.  Electroanalytical overview: utilising micro- and nano-dimensional sized materials in electrochemical-based biosensing platforms.

Authors:  Robert D Crapnell; Craig E Banks
Journal:  Mikrochim Acta       Date:  2021-07-22       Impact factor: 5.833

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