Label-Free Glucose Detection Using Cantilever Sensor Technology Based on Gravimetric Detection Principles
Efficient maintenance of glucose homeostasis is a major challenge in diabetes therapy, where accurate and reliable glucose level detection is required. Though several methods are currently used, these suffer from impaired response and often unpredictable drift, making them unsuitable for long-term t...
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doaj-73dbf363d1be4184b3d649f81af3820b2020-11-25T00:17:36ZengHindawi LimitedJournal of Analytical Methods in Chemistry2090-88652090-88732013-01-01201310.1155/2013/687265687265Label-Free Glucose Detection Using Cantilever Sensor Technology Based on Gravimetric Detection PrinciplesShuchen Hsieh0Shu-Ling Hsieh1Chiung-wen Hsieh2Po-Chiao Lin3Chun-Hsin Wu4Deparment of Chemistry, National Sun Yat-Sen University, 70 Lien-Hai Road, Kaohsiung 80424, TaiwanDepartment of Seafood Science, National Kaohsiung Marine University, Kaohsiung 81157, TaiwanDeparment of Chemistry, National Sun Yat-Sen University, 70 Lien-Hai Road, Kaohsiung 80424, TaiwanDeparment of Chemistry, National Sun Yat-Sen University, 70 Lien-Hai Road, Kaohsiung 80424, TaiwanDepartment of Computer Science and Information Engineering, National University of Kaohsiung, Kaohsiung 81148, TaiwanEfficient maintenance of glucose homeostasis is a major challenge in diabetes therapy, where accurate and reliable glucose level detection is required. Though several methods are currently used, these suffer from impaired response and often unpredictable drift, making them unsuitable for long-term therapeutic practice. In this study, we demonstrate a method that uses a functionalized atomic force microscope (AFM) cantilever as the sensor for reliable glucose detection with sufficient sensitivity and selectivity for clinical use. We first modified the AFM tip with aminopropylsilatrane (APS) and then adsorbed glucose-specific lectin concanavalin A (Con A) onto the surface. The Con A/APS-modified probes were then used to detect glucose by monitoring shifts in the cantilever resonance frequency. To confirm the molecule-specific interaction, AFM topographical images were acquired of identically treated silicon substrates which indicated a specific attachment for glucose-Con A and not for galactose-Con A. These results demonstrate that by monitoring the frequency shift of the AFM cantilever, this sensing system can detect the interaction between Con A and glucose, one of the biomolecule recognition processes, and may assist in the detection and mass quantification of glucose for clinical applications with very high sensitivity.http://dx.doi.org/10.1155/2013/687265 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Shuchen Hsieh Shu-Ling Hsieh Chiung-wen Hsieh Po-Chiao Lin Chun-Hsin Wu |
spellingShingle |
Shuchen Hsieh Shu-Ling Hsieh Chiung-wen Hsieh Po-Chiao Lin Chun-Hsin Wu Label-Free Glucose Detection Using Cantilever Sensor Technology Based on Gravimetric Detection Principles Journal of Analytical Methods in Chemistry |
author_facet |
Shuchen Hsieh Shu-Ling Hsieh Chiung-wen Hsieh Po-Chiao Lin Chun-Hsin Wu |
author_sort |
Shuchen Hsieh |
title |
Label-Free Glucose Detection Using Cantilever Sensor Technology Based on Gravimetric Detection Principles |
title_short |
Label-Free Glucose Detection Using Cantilever Sensor Technology Based on Gravimetric Detection Principles |
title_full |
Label-Free Glucose Detection Using Cantilever Sensor Technology Based on Gravimetric Detection Principles |
title_fullStr |
Label-Free Glucose Detection Using Cantilever Sensor Technology Based on Gravimetric Detection Principles |
title_full_unstemmed |
Label-Free Glucose Detection Using Cantilever Sensor Technology Based on Gravimetric Detection Principles |
title_sort |
label-free glucose detection using cantilever sensor technology based on gravimetric detection principles |
publisher |
Hindawi Limited |
series |
Journal of Analytical Methods in Chemistry |
issn |
2090-8865 2090-8873 |
publishDate |
2013-01-01 |
description |
Efficient maintenance of glucose homeostasis is a major challenge in diabetes therapy, where accurate and reliable glucose level detection is required. Though several methods are currently used, these suffer from impaired response and often unpredictable drift, making them unsuitable for long-term therapeutic practice. In this study, we demonstrate a method that uses a functionalized atomic force microscope (AFM) cantilever as the sensor for reliable glucose detection with sufficient sensitivity and selectivity for clinical use. We first modified the AFM tip with aminopropylsilatrane (APS) and then adsorbed glucose-specific lectin concanavalin A (Con A) onto the surface. The Con A/APS-modified probes were then used to detect glucose by monitoring shifts in the cantilever resonance frequency. To confirm the molecule-specific interaction, AFM topographical images were acquired of identically treated silicon substrates which indicated a specific attachment for glucose-Con A and not for galactose-Con A. These results demonstrate that by monitoring the frequency shift of the AFM cantilever, this sensing system can detect the interaction between Con A and glucose, one of the biomolecule recognition processes, and may assist in the detection and mass quantification of glucose for clinical applications with very high sensitivity. |
url |
http://dx.doi.org/10.1155/2013/687265 |
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