Self-assembly of acetylcholinesterase on gold nanoparticles electrodeposited on graphite release_gijzqt5utbfmhfbs6cvavmq4tq

by Nina Dimcheva, Elena Horozova, Yavor Ivanov, Tzonka Godjevargova

Published in Open Chemistry by Walter de Gruyter GmbH.

2013   Volume 11, Issue 11

Abstract

<jats:title>Abstract</jats:title>The immobilisation of AChE enzyme through chemisorption on Au-modified graphite was examined with view of its prospective application in the design of membraneless electrochemical biosensors for the assay of enzyme inhibitors. The developed immobilisation protocol has been based on a two-stage procedure, comprising i) electrodeposition of gold nanostructures on spectroscopic graphite; followed by ii) chemisorption of the enzyme onto gold nanoparticles. Both the coverage of the electrode surface with Au nanostructures and the conditions for enzyme immobilisation were optimised. The proposed electrode architecture together with the specific type of enzyme immobilisation allow for a long-term retaining of the enzyme catalytic activity. The extent of inhibition of the immobilised acetylcholinesterase enzyme by the organophosphorous compound monocrotophos has been found to depend linearly on its concentration over the range from 50 to 400 nmol mL−1 with sensitivity 77.2% inhibition per 1 µmol mL−1 of monocrotophos.
In application/xml+jats format

Archived Files and Locations

application/pdf   1.0 MB
file_5c5sselnkbhwzhipjaogprwy74
application/pdf   1.0 MB
file_bojbkl7vmjdtdhbcpemqm4ae4y
www.degruyter.com (publisher)
web.archive.org (webarchive)
application/pdf   1.0 MB
file_ndx4bsa4ibeyxbnwa74bk6m7ee
www.degruyter.com (publisher)
web.archive.org (webarchive)
Read Archived PDF
Preserved and Accessible
Type  article-journal
Stage   published
Date   2013-01-01
Container Metadata
Open Access Publication
In DOAJ
In Keepers Registry
ISSN-L:  2391-5420
Work Entity
access all versions, variants, and formats of this works (eg, pre-prints)
Catalog Record
Revision: a9b018a4-51bf-4911-8c48-6f7702067eac
API URL: JSON