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A Paper-Based Photoelectrochemical Sensing Platform Based on In Situ Grown ZnO/ZnIn(2)S(4) Heterojunctions onto Paper Fibers for Sensitively Detecting AFP

Nowadays, developing a cost-effective, easy-to-operate, and efficient signal amplification platform is of important to microfluidic paper-based analytical devices (μPAD) for end-use markets of point-of-care (POC) assay applications. Herein, an ultrasensitive, paper-based photoelectrochemical (PEC) b...

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Autores principales: Huang, Jiali, Li, Xu, Xiu, Mingzhen, Huang, Kang, Cui, Kang, Zhang, Jing, Ge, Shenguang, Hao, Shiji, Yu, Jinghua, Huang, Yizhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599276/
https://www.ncbi.nlm.nih.gov/pubmed/36290955
http://dx.doi.org/10.3390/bios12100818
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author Huang, Jiali
Li, Xu
Xiu, Mingzhen
Huang, Kang
Cui, Kang
Zhang, Jing
Ge, Shenguang
Hao, Shiji
Yu, Jinghua
Huang, Yizhong
author_facet Huang, Jiali
Li, Xu
Xiu, Mingzhen
Huang, Kang
Cui, Kang
Zhang, Jing
Ge, Shenguang
Hao, Shiji
Yu, Jinghua
Huang, Yizhong
author_sort Huang, Jiali
collection PubMed
description Nowadays, developing a cost-effective, easy-to-operate, and efficient signal amplification platform is of important to microfluidic paper-based analytical devices (μPAD) for end-use markets of point-of-care (POC) assay applications. Herein, an ultrasensitive, paper-based photoelectrochemical (PEC) bioassay platform is constructed by in situ grown ZnO/ZnIn(2)S(4) heterojunctions onto paper fibers, which acted as photoactive signal amplification probes for enhancing the sensitivity of antibodies-based diagnostic assays, for the sensitive detection of alpha-fetoprotein (AFP) targets. The crystalline flake-like ZnIn(2)S(4) composited with hexagonal nanorods (NRs) morphology of ZnO is an in situ grown, at the first time, onto cellulose fibers surface supported with Au nanoparticle (Au NP) modification to improve conductivity of the device working zone. The obtained composites on paper fibers are implemented as a flexible paper-based photoelectrode to realize remarkable performance of the fabricated μPAD, resulting from the enhanced PEC activity of heterojunctions with effective electron-hole pair separation for accelerating photoelectric conversion efficiency of the sensing process under light irradiation. Once the target AFP was introduced into the biosensing interface assistant, with a specific recognition interaction of AFP antibody, a drastically photocurrent response was generated, in view of the apparent steric effects. With the concentration increase of AFP targets, more immune conjugates could be confined onto the biosensing interface, eventually leading to the quantitative decrease of photocurrent intensity. Combined with an ingenious origami design and permitting the hydrophobic/hydrophilic conversion procedure in the bioassay process, the ultrasensitive PEC detection of AFP targets was realized. Under the optimized conditions, the level of AFP could be sensitively tracked by the prepared μPAD with a liner range from 0.1 to 100 ng mL(−1) and limit of detection of 0.03 ng mL(−1). This work provides a great potential application for highly selective and sensitive POC testing of AFP, and finally, developments for clinical disease diagnosis.
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spelling pubmed-95992762022-10-27 A Paper-Based Photoelectrochemical Sensing Platform Based on In Situ Grown ZnO/ZnIn(2)S(4) Heterojunctions onto Paper Fibers for Sensitively Detecting AFP Huang, Jiali Li, Xu Xiu, Mingzhen Huang, Kang Cui, Kang Zhang, Jing Ge, Shenguang Hao, Shiji Yu, Jinghua Huang, Yizhong Biosensors (Basel) Article Nowadays, developing a cost-effective, easy-to-operate, and efficient signal amplification platform is of important to microfluidic paper-based analytical devices (μPAD) for end-use markets of point-of-care (POC) assay applications. Herein, an ultrasensitive, paper-based photoelectrochemical (PEC) bioassay platform is constructed by in situ grown ZnO/ZnIn(2)S(4) heterojunctions onto paper fibers, which acted as photoactive signal amplification probes for enhancing the sensitivity of antibodies-based diagnostic assays, for the sensitive detection of alpha-fetoprotein (AFP) targets. The crystalline flake-like ZnIn(2)S(4) composited with hexagonal nanorods (NRs) morphology of ZnO is an in situ grown, at the first time, onto cellulose fibers surface supported with Au nanoparticle (Au NP) modification to improve conductivity of the device working zone. The obtained composites on paper fibers are implemented as a flexible paper-based photoelectrode to realize remarkable performance of the fabricated μPAD, resulting from the enhanced PEC activity of heterojunctions with effective electron-hole pair separation for accelerating photoelectric conversion efficiency of the sensing process under light irradiation. Once the target AFP was introduced into the biosensing interface assistant, with a specific recognition interaction of AFP antibody, a drastically photocurrent response was generated, in view of the apparent steric effects. With the concentration increase of AFP targets, more immune conjugates could be confined onto the biosensing interface, eventually leading to the quantitative decrease of photocurrent intensity. Combined with an ingenious origami design and permitting the hydrophobic/hydrophilic conversion procedure in the bioassay process, the ultrasensitive PEC detection of AFP targets was realized. Under the optimized conditions, the level of AFP could be sensitively tracked by the prepared μPAD with a liner range from 0.1 to 100 ng mL(−1) and limit of detection of 0.03 ng mL(−1). This work provides a great potential application for highly selective and sensitive POC testing of AFP, and finally, developments for clinical disease diagnosis. MDPI 2022-10-02 /pmc/articles/PMC9599276/ /pubmed/36290955 http://dx.doi.org/10.3390/bios12100818 Text en © 2022 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
Huang, Jiali
Li, Xu
Xiu, Mingzhen
Huang, Kang
Cui, Kang
Zhang, Jing
Ge, Shenguang
Hao, Shiji
Yu, Jinghua
Huang, Yizhong
A Paper-Based Photoelectrochemical Sensing Platform Based on In Situ Grown ZnO/ZnIn(2)S(4) Heterojunctions onto Paper Fibers for Sensitively Detecting AFP
title A Paper-Based Photoelectrochemical Sensing Platform Based on In Situ Grown ZnO/ZnIn(2)S(4) Heterojunctions onto Paper Fibers for Sensitively Detecting AFP
title_full A Paper-Based Photoelectrochemical Sensing Platform Based on In Situ Grown ZnO/ZnIn(2)S(4) Heterojunctions onto Paper Fibers for Sensitively Detecting AFP
title_fullStr A Paper-Based Photoelectrochemical Sensing Platform Based on In Situ Grown ZnO/ZnIn(2)S(4) Heterojunctions onto Paper Fibers for Sensitively Detecting AFP
title_full_unstemmed A Paper-Based Photoelectrochemical Sensing Platform Based on In Situ Grown ZnO/ZnIn(2)S(4) Heterojunctions onto Paper Fibers for Sensitively Detecting AFP
title_short A Paper-Based Photoelectrochemical Sensing Platform Based on In Situ Grown ZnO/ZnIn(2)S(4) Heterojunctions onto Paper Fibers for Sensitively Detecting AFP
title_sort paper-based photoelectrochemical sensing platform based on in situ grown zno/znin(2)s(4) heterojunctions onto paper fibers for sensitively detecting afp
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9599276/
https://www.ncbi.nlm.nih.gov/pubmed/36290955
http://dx.doi.org/10.3390/bios12100818
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