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题名

Multi-sensor integration on one microfluidics chip for single-stranded DNA detection

作者
通讯作者Yue, Weiwei
发表日期
2024
DOI
发表期刊
ISSN
0260-2288
摘要
Purpose: This study aims to improve detection efficiency of fluorescence biosensor or a graphene field-effect transistor biosensor. Graphene field-effect transistor biosensing and fluorescent biosensing were integrated and combined with magnetic nanoparticles to construct a multi-sensor integrated microfluidic biochip for detecting single-stranded DNA. Multi-sensor integrated biochip demonstrated higher detection reliability for a single target and could simultaneously detect different targets. Design/methodology/approach: In this study, the authors integrated graphene field-effect transistor biosensing and fluorescent biosensing, combined with magnetic nanoparticles, to fabricate a multi-sensor integrated microfluidic biochip for the detection of single-stranded deoxyribonucleic acid (DNA). Graphene films synthesized through chemical vapor deposition were transferred onto a glass substrate featuring two indium tin oxide electrodes, thus establishing conductive channels for the graphene field-effect transistor. Using π-π stacking, 1-pyrenebutanoic acid succinimidyl ester was immobilized onto the graphene film to serve as a medium for anchoring the probe aptamer. The fluorophore-labeled target DNA subsequently underwent hybridization with the probe aptamer, thereby forming a fluorescence detection channel. Findings: This paper presents a novel approach using three channels of light, electricity and magnetism for the detection of single-stranded DNA, accompanied by the design of a microfluidic detection platform integrating biosensor chips. Remarkably, the detection limit achieved is 10 pm, with an impressively low relative standard deviation of 1.007%. Originality/value: By detecting target DNA, the photo-electro-magnetic multi-sensor graphene field-effect transistor biosensor not only enhances the reliability and efficiency of detection but also exhibits additional advantages such as compact size, affordability, portability and straightforward automation. Real-time display of detection outcomes on the host facilitates a deeper comprehension of biochemical reaction dynamics. Moreover, besides detecting the same target, the sensor can also identify diverse targets, primarily leveraging the penetrative and noninvasive nature of light.
© 2024, Emerald Publishing Limited.
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资助项目
The study was supported by the Natural Science Foundation of Shandong Province (Grant No. ZR2019MF025) and the Foundation of Shandong Provincial Key Laboratory of Biophysics (Grant No. SD2019BP003).
出版者
EI入藏号
20243817043107
EI主题词
Biosynthesis ; Chemically sensitive field effect transistors ; Electromagnetic induction ; Graphene transistors ; Integrated circuit design ; Magnetic levitation ; Magnetic nanoparticles ; Microfluidic chips ; Partial discharges ; Photopolymerization ; Surface discharges ; Thermopiles
EI分类号
:101.7 ; :101.8 ; :1401.4.1 ; :205.2 ; Electricity: Basic Concepts and Phenomena:701.1 ; Magnetism: Basic Concepts and Phenomena:701.2 ; Electrical Engineering, General:709 ; Electron Tubes:714.1 ; Semiconductor Devices and Integrated Circuits:714.2 ; :741.1/Optics ; Nanotechnology:761 ; Chemistry, General:801.1 ; Chemical Reactions:802.2 ; :904 ; :942.1.11
来源库
EV Compendex
引用统计
成果类型期刊论文
条目标识符http://sustech.caswiz.com/handle/2SGJ60CL/840999
专题南方科技大学
作者单位
1.Department of School of Physics and Electronics, Shandong Normal University, Jinan, China
2.Southern University of Science and Technology, Shenzhen, China
推荐引用方式
GB/T 7714
Yue, Weiwei,Cao, Yuwei,Xie, Shuqi,et al. Multi-sensor integration on one microfluidics chip for single-stranded DNA detection[J]. Sensor Review,2024.
APA
Yue, Weiwei.,Cao, Yuwei.,Xie, Shuqi.,Cheng, Kang Ning.,Ding, Yue.,...&Shafi, Muhammad.(2024).Multi-sensor integration on one microfluidics chip for single-stranded DNA detection.Sensor Review.
MLA
Yue, Weiwei,et al."Multi-sensor integration on one microfluidics chip for single-stranded DNA detection".Sensor Review (2024).
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