Rapid determination of vitamin B12 concentration with a chemiluminescence lab on a chip
This paper reports a novel method for the rapid determination of vitamin B12 concentration in a continuous-flow lab-on-a-chip system. This new method is based on luminol-peroxide chemiluminescence (CL) assays for the detection of cobalt(II) ions in vitamin B12 molecules. The lab-on-a-chip device con...
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sg-ntu-dr.10356-942032023-03-04T17:18:16Z Rapid determination of vitamin B12 concentration with a chemiluminescence lab on a chip Lok, Khoi Seng Siti Zubaidah Abdul Muttalib Lee, Peter Peng Foo Kwok, Yien Chian Nguyen, Nam-Trung School of Mechanical and Aerospace Engineering DRNTU::Engineering::Mechanical engineering This paper reports a novel method for the rapid determination of vitamin B12 concentration in a continuous-flow lab-on-a-chip system. This new method is based on luminol-peroxide chemiluminescence (CL) assays for the detection of cobalt(II) ions in vitamin B12 molecules. The lab-on-a-chip device consisted of two passive micromixers acting as microreactors and a double spiral microchannel network serving as an optical detection region. This system could operate in two modes. In the first mode, samples are acidified and evaluated directly in the microchip. In the second mode, samples are treated externally by acidification prior to detection in the microchip. In the first mode, the linear range obtained was between 1.00 ng ml−1 to 10 μg ml−1, R2 = 0.996, with a relative standard deviation (RSD) of 1.23 to 2.31% (n = 5) and a limit of detection (lod) of 0.368 pg ml−1. The minimum sample volume required and the analytical time were 30 μl and 3.6 s, respectively. In the second mode, the linear range obtained was between 0.10 ng ml−1 to 10 μg ml−1, R2 = 0.994, with the RSD of 0.90 to 2.32% (n = 6) and a lod of 0.576 pg ml−1. The minimum sample and the analytical time required were 50 μl and 6 s, respectively. The lab on a chip working in mode II was successfully used for the determination of vitamin B12 concentrations in nutritional supplemental tablets and hen egg yolks. Accepted version 2012-05-14T05:52:38Z 2019-12-06T18:52:24Z 2012-05-14T05:52:38Z 2019-12-06T18:52:24Z 2012 2012 Journal Article Lok, K. S., Siti, Z. A. M., Lee, P. P. F., Kwok, Y. C., & Nguyen, N. T. (2012). Rapid Determination of Vitamin B12 Concentration with a Chemiluminescence Lab on a Chip. Lab on a Chip, 12(13), 2353-2361. https://hdl.handle.net/10356/94203 http://hdl.handle.net/10220/7933 10.1039/C2LC00037G 164008 en Lab on a chip © 2012 The Royal Society of Chemistry. This is the author created version of a work that has been peer reviewed and accepted for publication by Lab on a Chip, The Royal Society of Chemistry. It incorporates referee’s comments but changes resulting from the publishing process, such as copyediting, structural formatting, may not be reflected in this document. The published version is available at: DOI: [http://dx.doi.org/10.1039/C2LC00037G]. 9 p. application/pdf |
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DRNTU::Engineering::Mechanical engineering Lok, Khoi Seng Siti Zubaidah Abdul Muttalib Lee, Peter Peng Foo Kwok, Yien Chian Nguyen, Nam-Trung Rapid determination of vitamin B12 concentration with a chemiluminescence lab on a chip |
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This paper reports a novel method for the rapid determination of vitamin B12 concentration in a continuous-flow lab-on-a-chip system. This new method is based on luminol-peroxide chemiluminescence (CL) assays for the detection of cobalt(II) ions in vitamin B12 molecules. The lab-on-a-chip device consisted of two passive micromixers acting as microreactors and a double spiral microchannel network serving as an optical detection region. This system could operate in two modes. In the first mode, samples are acidified and evaluated directly in the microchip. In the second mode, samples are treated externally by acidification prior to detection in the microchip. In the first mode, the linear range obtained was between 1.00 ng ml−1 to 10 μg ml−1, R2 = 0.996, with a relative standard deviation (RSD) of 1.23 to 2.31% (n = 5) and a limit of detection (lod) of 0.368 pg ml−1. The minimum sample volume required and the analytical time were 30 μl and 3.6 s, respectively. In the second mode, the linear range obtained was between 0.10 ng ml−1 to 10 μg ml−1, R2 = 0.994, with the RSD of 0.90 to 2.32% (n = 6) and a lod of 0.576 pg ml−1. The minimum sample and the analytical time required were 50 μl and 6 s, respectively. The lab on a chip working in mode II was successfully used for the determination of vitamin B12 concentrations in nutritional supplemental tablets and hen egg yolks. |
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School of Mechanical and Aerospace Engineering |
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School of Mechanical and Aerospace Engineering Lok, Khoi Seng Siti Zubaidah Abdul Muttalib Lee, Peter Peng Foo Kwok, Yien Chian Nguyen, Nam-Trung |
format |
Article |
author |
Lok, Khoi Seng Siti Zubaidah Abdul Muttalib Lee, Peter Peng Foo Kwok, Yien Chian Nguyen, Nam-Trung |
author_sort |
Lok, Khoi Seng |
title |
Rapid determination of vitamin B12 concentration with a chemiluminescence lab on a chip |
title_short |
Rapid determination of vitamin B12 concentration with a chemiluminescence lab on a chip |
title_full |
Rapid determination of vitamin B12 concentration with a chemiluminescence lab on a chip |
title_fullStr |
Rapid determination of vitamin B12 concentration with a chemiluminescence lab on a chip |
title_full_unstemmed |
Rapid determination of vitamin B12 concentration with a chemiluminescence lab on a chip |
title_sort |
rapid determination of vitamin b12 concentration with a chemiluminescence lab on a chip |
publishDate |
2012 |
url |
https://hdl.handle.net/10356/94203 http://hdl.handle.net/10220/7933 |
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1759855283384877056 |