Sensitive label-free detection of the biomarker phosphorylated tau−217 protein in Alzheimer's disease using a graphene-based solution-gated field effect transistor

Sian Hong Ciou, Ao Ho Hsieh, Yu Xiu Lin, Jhao Liang Sei, Mani Govindasamy, Chang Fu Kuo*, Chi Hsien Huang*

*此作品的通信作者

研究成果: 期刊稿件文章同行評審

23 引文 斯高帕斯(Scopus)

摘要

Alzheimer's disease (AD) is generally diagnosed using advanced imaging, but recent research suggests early screening using biomarkers in peripheral blood is feasible; among them, plasma tau proteins phosphorylated at threonine 231, threonine 181, and threonine 217 (p-tau217) are potential targets. A recent study indicates that the p-tau217 protein is the most efficacious biomarker. However, a clinical study found a pg/ml threshold for AD screening beyond standard detection methods. A biosensor with high sensitivity and specificity p-tau217 detection has not yet been reported. In this study, we developed a label-free solution-gated field effect transistor (SGFET)-based biosensor featuring a graphene oxide/graphene (GO/G) layered composite. The top layer of bilayer graphene grown using chemical vapor deposition was functionalized with oxidative groups serving as active sites for forming covalent bonds with the biorecognition element (antibodies); the bottom G could act as a transducer to respond to the attachment of the target analytes onto the top GO conjugated with the biorecognition element via π−π interactions between the GO and G layers. With this unique atomically layered G composite, we obtained a good linear electrical response in the Dirac point shift to p-tau217 protein concentrations in the range of 10 fg/ml to 100 pg/ml. The biosensor exhibited a high sensitivity of 18.6 mV/decade with a high linearity of 0.991 in phosphate-buffered saline (PBS); in human serum albumin, it showed approximately 90% of the sensitivity (16.7 mV/decade) in PBS, demonstrating high specificity. High stability of the biosensor was also displayed in this study.

原文英語
文章編號115174
頁(從 - 到)115174
期刊Biosensors and Bioelectronics
228
DOIs
出版狀態已出版 - 15 05 2023

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