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Electric-field-directed self-assembly of active enzyme-nanoparticle structures.

Authors :
Hsiao AP
Heller MJ
Source :
Journal of biomedicine & biotechnology [J Biomed Biotechnol] 2012; Vol. 2012, pp. 178487. Date of Electronic Publication: 2012 Feb 01.
Publication Year :
2012

Abstract

A method is presented for the electric-field-directed self-assembly of higher-order structures composed of alternating layers of biotin nanoparticles and streptavidin-/avidin-conjugated enzymes carried out on a microelectrode array device. Enzymes included in the study were glucose oxidase (GOx), horseradish peroxidase (HRP), and alkaline phosphatase (AP); all of which could be used to form a light-emitting microscale glucose sensor. Directed assembly included fabricating multilayer structures with 200 nm or 40 nm GOx-avidin-biotin nanoparticles, with AP-streptavidin-biotin nanoparticles, and with HRP-streptavidin-biotin nanoparticles. Multilayered structures were also fabricated with alternate layering of HRP-streptavidin-biotin nanoparticles and GOx-avidin-biotin nanoparticles. Results showed that enzymatic activity was retained after the assembly process, indicating that substrates could still diffuse into the structures and that the electric-field-based fabrication process itself did not cause any significant loss of enzyme activity. These methods provide a solution to overcome the cumbersome passive layer-by-layer assembly methods to efficiently fabricate higher-order active biological and chemical hybrid structures that can be useful for creating novel biosensors and drug delivery nanostructures, as well as for diagnostic applications.

Details

Language :
English
ISSN :
1110-7251
Volume :
2012
Database :
MEDLINE
Journal :
Journal of biomedicine & biotechnology
Publication Type :
Academic Journal
Accession number :
22500078
Full Text :
https://doi.org/10.1155/2012/178487