Issue 3, 2011

Enzyme entrapped nanoporous scaffolds formed through flow-induced gelation in a microfluidic filter device for sensitive biosensing of organophosphorus compounds

Abstract

A novel and versatile processing method was developed for the formation of gel scaffolds with in situAChE–AuNPs immobilization for biosensing of organophosphorus compounds. The biosensor designed by our new approach shows high sensitivity, selectivity and reactivation efficiency. This flow-induced immobilization technique opens up new pathways for designing a simple, fast, biocompatible, and cost-effective process for enhanced sensor performance and on-site monitoring of a variety of toxic organophosphorus compounds.

Graphical abstract: Enzyme entrapped nanoporous scaffolds formed through flow-induced gelation in a microfluidic filter device for sensitive biosensing of organophosphorus compounds

Supplementary files

Article information

Article type
Communication
Submitted
25 Aug 2010
Accepted
10 Nov 2010
First published
08 Dec 2010

Lab Chip, 2011,11, 381-384

Enzyme entrapped nanoporous scaffolds formed through flow-induced gelation in a microfluidic filter device for sensitive biosensing of organophosphorus compounds

D. Lu, G. Shao, D. Du, J. Wang, L. Wang, W. Wang and Y. Lin, Lab Chip, 2011, 11, 381 DOI: 10.1039/C0LC00337A

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