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基于石墨烯场效应晶体管的无标记传感器用于检测人绒毛膜促性腺激素癌症风险生物标志物

Label-Free Sensors Based on Graphene Field-Effect Transistors for the Detection of Human Chorionic Gonadotropin Cancer Risk Biomarker.

作者信息

Haslam Carrie, Damiati Samar, Whitley Toby, Davey Paul, Ifeachor Emmanuel, Awan Shakil A

机构信息

Wolfson Nanomaterials and Devices Laboratory, School of Computing, Electronics and Mathematics, Faculty of Science and Engineering, University of Plymouth, Plymouth PL4 8AA, UK.

Department of Biochemistry, Faculty of Science, King Abdulaziz University (KAU), Jeddah 21589, Saudi Arabia.

出版信息

Diagnostics (Basel). 2018 Jan 8;8(1):5. doi: 10.3390/diagnostics8010005.

Abstract

We report on the development of label-free chemical vapour deposition (CVD) graphene field effect transistor (GFET) immunosensors for the sensitive detection of Human Chorionic Gonadotropin (hCG), a glycoprotein risk biomarker of certain cancers. The GFET sensors were fabricated on Si/SiO₂ substrate using photolithography with evaporated chromium and sputtered gold contacts. GFET channels were functionalised with a linker molecule to an immobile anti-hCG antibody on the surface of graphene. The binding reaction of the antibody with varying concentration levels of hCG antigen demonstrated the limit of detection of the GFET sensors to be below 1 pg/mL using four-probe electrical measurements. We also show that annealing can significantly improve the carrier transport properties of GFETs and shift the Dirac point (Fermi level) with reduced p-doping in back-gated measurements. The developed GFET biosensors are generic and could find applications in a broad range of medical diagnostics in addition to cancer, such as neurodegenerative (Alzheimer's and Parkinson's ) and cardiovascular disorders.

摘要

我们报告了用于灵敏检测人绒毛膜促性腺激素(hCG)的无标记化学气相沉积(CVD)石墨烯场效应晶体管(GFET)免疫传感器的研发情况。hCG是某些癌症的一种糖蛋白风险生物标志物。GFET传感器是在Si/SiO₂衬底上通过光刻技术制作的,带有蒸发铬和溅射金触点。GFET通道用连接分子进行功能化,使其与石墨烯表面固定的抗hCG抗体相连。抗体与不同浓度水平的hCG抗原的结合反应表明,使用四探针电学测量时,GFET传感器的检测限低于1 pg/mL。我们还表明,退火可以显著改善GFET的载流子传输特性,并在背栅测量中通过减少p型掺杂来移动狄拉克点(费米能级)。所开发的GFET生物传感器具有通用性,除癌症外,还可在广泛的医学诊断中找到应用,如神经退行性疾病(阿尔茨海默病和帕金森病)以及心血管疾病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca50/5871988/5a43d1aea787/diagnostics-08-00005-g001.jpg

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