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Craft-and-Stick Xurographic Manufacturing of Integrated Microfluidic Electrochemical Sensing Platform

An innovative modular approach for facile design and construction of flexible microfluidic biosensor platforms based on a dry manufacturing “craft-and-stick” approach is developed. The design and fabrication of the flexible graphene paper electrode (GPE) unit and polyethylene tetraphthalate sheet (P...

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Autores principales: Kongkaew, Supatinee, Meng, Lingyin, Limbut, Warakorn, Liu, Guozhen, Kanatharana, Proespichaya, Thavarungkul, Panote, Mak, Wing Cheung
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10136003/
https://www.ncbi.nlm.nih.gov/pubmed/37185521
http://dx.doi.org/10.3390/bios13040446
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author Kongkaew, Supatinee
Meng, Lingyin
Limbut, Warakorn
Liu, Guozhen
Kanatharana, Proespichaya
Thavarungkul, Panote
Mak, Wing Cheung
author_facet Kongkaew, Supatinee
Meng, Lingyin
Limbut, Warakorn
Liu, Guozhen
Kanatharana, Proespichaya
Thavarungkul, Panote
Mak, Wing Cheung
author_sort Kongkaew, Supatinee
collection PubMed
description An innovative modular approach for facile design and construction of flexible microfluidic biosensor platforms based on a dry manufacturing “craft-and-stick” approach is developed. The design and fabrication of the flexible graphene paper electrode (GPE) unit and polyethylene tetraphthalate sheet (PET)6/adhesive fluidic unit are completed by an economic and generic xurographic craft approach. The GPE widths and the microfluidic channels can be constructed down to 300 μm and 200 μm, respectively. Both units were assembled by simple double-sided adhesive tapes into a microfluidic integrated GPE (MF-iGPE) that are flexible, thin (<0.5 mm), and lightweight (0.4 g). We further functionalized the iGPE with Prussian blue and glucose oxidase for the fabrication of MF-iGPE glucose biosensors. With a closed-channel PET fluidic pattern, the MF-iGPE glucose biosensors were packaged and sealed to protect the integrated device from moisture for storage and could easily open with scissors for sample loading. Our glucose biosensors showed 2 linear dynamic regions of 0.05–1.0 and 1.0–5.5 mmol L(−1) glucose. The MF-iGPE showed good reproducibility for glucose detection (RSD < 6.1%, n = 6) and required only 10 μL of the analyte. This modular craft-and-stick manufacturing approach could potentially further develop along the concept of paper-crafted model assembly kits suitable for low-resource laboratories or classroom settings.
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spelling pubmed-101360032023-04-28 Craft-and-Stick Xurographic Manufacturing of Integrated Microfluidic Electrochemical Sensing Platform Kongkaew, Supatinee Meng, Lingyin Limbut, Warakorn Liu, Guozhen Kanatharana, Proespichaya Thavarungkul, Panote Mak, Wing Cheung Biosensors (Basel) Article An innovative modular approach for facile design and construction of flexible microfluidic biosensor platforms based on a dry manufacturing “craft-and-stick” approach is developed. The design and fabrication of the flexible graphene paper electrode (GPE) unit and polyethylene tetraphthalate sheet (PET)6/adhesive fluidic unit are completed by an economic and generic xurographic craft approach. The GPE widths and the microfluidic channels can be constructed down to 300 μm and 200 μm, respectively. Both units were assembled by simple double-sided adhesive tapes into a microfluidic integrated GPE (MF-iGPE) that are flexible, thin (<0.5 mm), and lightweight (0.4 g). We further functionalized the iGPE with Prussian blue and glucose oxidase for the fabrication of MF-iGPE glucose biosensors. With a closed-channel PET fluidic pattern, the MF-iGPE glucose biosensors were packaged and sealed to protect the integrated device from moisture for storage and could easily open with scissors for sample loading. Our glucose biosensors showed 2 linear dynamic regions of 0.05–1.0 and 1.0–5.5 mmol L(−1) glucose. The MF-iGPE showed good reproducibility for glucose detection (RSD < 6.1%, n = 6) and required only 10 μL of the analyte. This modular craft-and-stick manufacturing approach could potentially further develop along the concept of paper-crafted model assembly kits suitable for low-resource laboratories or classroom settings. MDPI 2023-03-31 /pmc/articles/PMC10136003/ /pubmed/37185521 http://dx.doi.org/10.3390/bios13040446 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kongkaew, Supatinee
Meng, Lingyin
Limbut, Warakorn
Liu, Guozhen
Kanatharana, Proespichaya
Thavarungkul, Panote
Mak, Wing Cheung
Craft-and-Stick Xurographic Manufacturing of Integrated Microfluidic Electrochemical Sensing Platform
title Craft-and-Stick Xurographic Manufacturing of Integrated Microfluidic Electrochemical Sensing Platform
title_full Craft-and-Stick Xurographic Manufacturing of Integrated Microfluidic Electrochemical Sensing Platform
title_fullStr Craft-and-Stick Xurographic Manufacturing of Integrated Microfluidic Electrochemical Sensing Platform
title_full_unstemmed Craft-and-Stick Xurographic Manufacturing of Integrated Microfluidic Electrochemical Sensing Platform
title_short Craft-and-Stick Xurographic Manufacturing of Integrated Microfluidic Electrochemical Sensing Platform
title_sort craft-and-stick xurographic manufacturing of integrated microfluidic electrochemical sensing platform
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10136003/
https://www.ncbi.nlm.nih.gov/pubmed/37185521
http://dx.doi.org/10.3390/bios13040446
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