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Development of a Novel Fluorophore for Real-Time Biomonitoring System

Rapid in-field diagnosis is very important to prevent the outbreak of various infectious and contagious diseases. Highly sensitive and quantitative detection of diseases can be performed using fluorescent immunochemical assay with specific antigen-antibody binding and a good quality fluorophore. Thi...

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Autores principales: Song, Hyun-Ok, Lee, Binna, Bhusal, Ram Prasad, Park, Byounghun, Yu, Kyoungsik, Chong, Chom-Kyu, Cho, PyoYun, Kim, Sung Yeon, Kim, Hak Sung, Park, Hyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3487730/
https://www.ncbi.nlm.nih.gov/pubmed/23133635
http://dx.doi.org/10.1371/journal.pone.0048459
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author Song, Hyun-Ok
Lee, Binna
Bhusal, Ram Prasad
Park, Byounghun
Yu, Kyoungsik
Chong, Chom-Kyu
Cho, PyoYun
Kim, Sung Yeon
Kim, Hak Sung
Park, Hyun
author_facet Song, Hyun-Ok
Lee, Binna
Bhusal, Ram Prasad
Park, Byounghun
Yu, Kyoungsik
Chong, Chom-Kyu
Cho, PyoYun
Kim, Sung Yeon
Kim, Hak Sung
Park, Hyun
author_sort Song, Hyun-Ok
collection PubMed
description Rapid in-field diagnosis is very important to prevent the outbreak of various infectious and contagious diseases. Highly sensitive and quantitative detection of diseases can be performed using fluorescent immunochemical assay with specific antigen-antibody binding and a good quality fluorophore. This can lead to the development of a small, portable, quantitative biosensor to transmit diagnostic results to a control center in order to systematically prevent disease outbreaks. In this study, we developed a novel fluorophore, coumarin-derived dendrimer, with high emission intensity, strong signal brightness, and high photostability. It is easily coupled with biomolecules and emits strong and stable fluorescence at 590 nm with excitation at 455 nm. Application to fluorescent immunochromatographic test (FICT) showed that the novel coumarin-derived dendrimer bioconjugate could detect antigens at amount as low as 0.1 ng. The clinical results and the spectral characteristics of the novel coumarin-derived dendrimer open, for the first time, the possibility of developing a cost/energy efficient LED-based portable quantitative biosensor for point-of-care (POC) disease diagnosis, which can permit real time monitoring (U-healthcare system) by a disease control center.
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spelling pubmed-34877302012-11-06 Development of a Novel Fluorophore for Real-Time Biomonitoring System Song, Hyun-Ok Lee, Binna Bhusal, Ram Prasad Park, Byounghun Yu, Kyoungsik Chong, Chom-Kyu Cho, PyoYun Kim, Sung Yeon Kim, Hak Sung Park, Hyun PLoS One Research Article Rapid in-field diagnosis is very important to prevent the outbreak of various infectious and contagious diseases. Highly sensitive and quantitative detection of diseases can be performed using fluorescent immunochemical assay with specific antigen-antibody binding and a good quality fluorophore. This can lead to the development of a small, portable, quantitative biosensor to transmit diagnostic results to a control center in order to systematically prevent disease outbreaks. In this study, we developed a novel fluorophore, coumarin-derived dendrimer, with high emission intensity, strong signal brightness, and high photostability. It is easily coupled with biomolecules and emits strong and stable fluorescence at 590 nm with excitation at 455 nm. Application to fluorescent immunochromatographic test (FICT) showed that the novel coumarin-derived dendrimer bioconjugate could detect antigens at amount as low as 0.1 ng. The clinical results and the spectral characteristics of the novel coumarin-derived dendrimer open, for the first time, the possibility of developing a cost/energy efficient LED-based portable quantitative biosensor for point-of-care (POC) disease diagnosis, which can permit real time monitoring (U-healthcare system) by a disease control center. Public Library of Science 2012-11-02 /pmc/articles/PMC3487730/ /pubmed/23133635 http://dx.doi.org/10.1371/journal.pone.0048459 Text en © 2012 Song et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Song, Hyun-Ok
Lee, Binna
Bhusal, Ram Prasad
Park, Byounghun
Yu, Kyoungsik
Chong, Chom-Kyu
Cho, PyoYun
Kim, Sung Yeon
Kim, Hak Sung
Park, Hyun
Development of a Novel Fluorophore for Real-Time Biomonitoring System
title Development of a Novel Fluorophore for Real-Time Biomonitoring System
title_full Development of a Novel Fluorophore for Real-Time Biomonitoring System
title_fullStr Development of a Novel Fluorophore for Real-Time Biomonitoring System
title_full_unstemmed Development of a Novel Fluorophore for Real-Time Biomonitoring System
title_short Development of a Novel Fluorophore for Real-Time Biomonitoring System
title_sort development of a novel fluorophore for real-time biomonitoring system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3487730/
https://www.ncbi.nlm.nih.gov/pubmed/23133635
http://dx.doi.org/10.1371/journal.pone.0048459
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