A whole cell bio-optode based on immobilized nitrite-degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion

A microspheres-based microbial optosensor for NO2− ion quantitation was constructed by using immobilized Raoutella planticola (R. planticola), the bacterium expressing NAD(P)H nitrite reductase (NiR) enzyme, which was isolated from local edible bird’s nest (EBN) via microbial technique. The whole ce...

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Main Authors: Siti Nur Syazni, Mohd Zuki, Ling, Tan ling, Nina Suhaity, Azmi, Lee, Yook Heng, Kwok Feng, Chong, Saiful Nizam, Tajuddin
Format: Article
Language:English
Published: Elsevier Ltd 2018
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/19852/1/fist-2018-nina-whole%20cell%20bio-optode%20based%20on%20immobilized%20nitrite-degrading.pdf
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author Siti Nur Syazni, Mohd Zuki
Ling, Tan ling
Nina Suhaity, Azmi
Lee, Yook Heng
Kwok Feng, Chong
Saiful Nizam, Tajuddin
author_facet Siti Nur Syazni, Mohd Zuki
Ling, Tan ling
Nina Suhaity, Azmi
Lee, Yook Heng
Kwok Feng, Chong
Saiful Nizam, Tajuddin
author_sort Siti Nur Syazni, Mohd Zuki
collection UMP
description A microspheres-based microbial optosensor for NO2− ion quantitation was constructed by using immobilized Raoutella planticola (R. planticola), the bacterium expressing NAD(P)H nitrite reductase (NiR) enzyme, which was isolated from local edible bird’s nest (EBN) via microbial technique. The whole cells and the lipophilic Nile Blue chromoionophore (NBC) were physically adsorbed on the self-adhesive photocurable poly(n-butyl acrylate-co-N-acryloxysuccinimide) [poly(nBA-NAS)] microspheres, whilst the reduced co-enzyme NAD(P)H was covalently immobilized on the succinimide-functionalized acrylic microspheres via peptide link to produce a reagentless nitrite biosensing system. As the microbial bio-optode responded to nitrite through colour change from blue to pink, a facile reflectometric approach was adopted to measure reflectance intensity at 639 nm, before and after reaction with nitrite at optimum pH 8. The optosensor could quantify NO2− ion concentration within a dynamic linear response range of 0.5–400 mg L−1 with a limit of detection (LOD) of 0.2 mg L−1. The large surface area to volume ratio of the acrylic microspheres allowed solid-state diffusional mass transfer of the substrate to occur at micro-bio-optode surface, and an equilibrium response was achieved within 5 min. The practical feasibility of using the bio-optode for nitrite assay in food matrix sample showed good agreement with standard ion chromatography method.
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spelling UMPir198522023-08-09T01:49:13Z http://umpir.ump.edu.my/id/eprint/19852/ A whole cell bio-optode based on immobilized nitrite-degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion Siti Nur Syazni, Mohd Zuki Ling, Tan ling Nina Suhaity, Azmi Lee, Yook Heng Kwok Feng, Chong Saiful Nizam, Tajuddin Q Science (General) QD Chemistry QR Microbiology A microspheres-based microbial optosensor for NO2− ion quantitation was constructed by using immobilized Raoutella planticola (R. planticola), the bacterium expressing NAD(P)H nitrite reductase (NiR) enzyme, which was isolated from local edible bird’s nest (EBN) via microbial technique. The whole cells and the lipophilic Nile Blue chromoionophore (NBC) were physically adsorbed on the self-adhesive photocurable poly(n-butyl acrylate-co-N-acryloxysuccinimide) [poly(nBA-NAS)] microspheres, whilst the reduced co-enzyme NAD(P)H was covalently immobilized on the succinimide-functionalized acrylic microspheres via peptide link to produce a reagentless nitrite biosensing system. As the microbial bio-optode responded to nitrite through colour change from blue to pink, a facile reflectometric approach was adopted to measure reflectance intensity at 639 nm, before and after reaction with nitrite at optimum pH 8. The optosensor could quantify NO2− ion concentration within a dynamic linear response range of 0.5–400 mg L−1 with a limit of detection (LOD) of 0.2 mg L−1. The large surface area to volume ratio of the acrylic microspheres allowed solid-state diffusional mass transfer of the substrate to occur at micro-bio-optode surface, and an equilibrium response was achieved within 5 min. The practical feasibility of using the bio-optode for nitrite assay in food matrix sample showed good agreement with standard ion chromatography method. Elsevier Ltd 2018-09-18 Article PeerReviewed application/pdf en http://umpir.ump.edu.my/id/eprint/19852/1/fist-2018-nina-whole%20cell%20bio-optode%20based%20on%20immobilized%20nitrite-degrading.pdf Siti Nur Syazni, Mohd Zuki and Ling, Tan ling and Nina Suhaity, Azmi and Lee, Yook Heng and Kwok Feng, Chong and Saiful Nizam, Tajuddin (2018) A whole cell bio-optode based on immobilized nitrite-degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion. Sensors and Actuators B: Chemical, 255 (Part 3). pp. 2844-2852. ISSN 0925-4005. (Published) https://doi.org/10.1016/j.snb.2017.09.102 https://doi.org/10.1016/j.snb.2017.09.102
spellingShingle Q Science (General)
QD Chemistry
QR Microbiology
Siti Nur Syazni, Mohd Zuki
Ling, Tan ling
Nina Suhaity, Azmi
Lee, Yook Heng
Kwok Feng, Chong
Saiful Nizam, Tajuddin
A whole cell bio-optode based on immobilized nitrite-degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion
title A whole cell bio-optode based on immobilized nitrite-degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion
title_full A whole cell bio-optode based on immobilized nitrite-degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion
title_fullStr A whole cell bio-optode based on immobilized nitrite-degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion
title_full_unstemmed A whole cell bio-optode based on immobilized nitrite-degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion
title_short A whole cell bio-optode based on immobilized nitrite-degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion
title_sort whole cell bio optode based on immobilized nitrite degrading microorganism on the acrylic microspheres for visual quantitation of nitrite ion
topic Q Science (General)
QD Chemistry
QR Microbiology
url http://umpir.ump.edu.my/id/eprint/19852/1/fist-2018-nina-whole%20cell%20bio-optode%20based%20on%20immobilized%20nitrite-degrading.pdf
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