The Effect of Aptamer Concetration towards Reduced Graphene Oxide-Field Effect Transistor Surface Channel for Biosensor Application

被引:3
作者
Abidin, Azrul Syafiq Zainol [1 ]
Rahim, Ruslinda Abdul [1 ]
Huan, Chow Yong [2 ]
Maidin, Nur Nasyifa Mohd [1 ]
Ahmad, Nurul Atiqah [1 ]
Hashwan, Saeed S. Ba [1 ]
Faudzi, Fatin Nabilah Mohd [1 ]
Hong, Voon Chun [1 ]
机构
[1] Univ Malaysia Perlis, Inst Nano Elect Engn, Kangar Perlis 01000, Malaysia
[2] Univ Malaysia Perlis, Sch Microelect Engn, Kangar Perlis 01000, Malaysia
来源
MALAYSIAN TECHNICAL UNIVERSITIES CONFERENCE ON ENGINEERING AND TECHNOLOGY 2017 (MUCET 2017) | 2018年 / 318卷
关键词
D O I
10.1088/1757-899X/318/1/012045
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Aptamer are artificially produce bioreceptor that has been developed to bind with various target biomolecules such as ion, cells, protein and small molecules. In this research, an aptamer concentration of 0.5 nM, 1 nM, 5 nM, 10 nM, and 50 nM were immobilized on reduced graphene oxide (rGO) integrated with field effect transistor (FET) respectively to study the effect of aptamer concentration toward rGO surface for stable biosensing platform. The 0.5 nM concentration of aptamer shows the highest current result of 84.3 mu A at 1 V applied through the source and drain. After immobilized with aminated aptamer, the conductivity shows significant reduction due to the formation of amide bond on rGO surface between aminated aptamer and carboxyl group on rGO. The electrical performance of FET integrated with rGO shows stable electrical performance suitable to be used in the biosensing application.
引用
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页数:8
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共 13 条
[1]   Field Effect Transistor Biosensor Using Antigen Binding Fragment for Detecting Tumor Marker in Human Serum [J].
Cheng, Shanshan ;
Hotani, Kaori ;
Hideshima, Sho ;
Kuroiwa, Shigeki ;
Nakanishi, Takuya ;
Hashimoto, Masahiro ;
Mori, Yasuro ;
Osaka, Tetsuya .
MATERIALS, 2014, 7 (04) :2490-2500
[2]   Aptamers, antibody scFv, and antibody Fab' fragments: An overview and comparison of three of the most versatile biosensor biorecognition elements [J].
Crivianu-Gaita, Victor ;
Thompson, Michael .
BIOSENSORS & BIOELECTRONICS, 2016, 85 :32-45
[3]   Atomic Structure of Reduced Graphene Oxide [J].
Gomez-Navarro, Cristina ;
Meyer, Jannik C. ;
Sundaram, Ravi S. ;
Chuvilin, Andrey ;
Kurasch, Simon ;
Burghard, Marko ;
Kern, Klaus ;
Kaiser, Ute .
NANO LETTERS, 2010, 10 (04) :1144-1148
[4]   Centimeter-Long and Large-Scale Micropatterns of Reduced Graphene Oxide Films: Fabrication and Sensing Applications [J].
He, Qiyuan ;
Sudibya, Herry Gunadi ;
Yin, Zongyou ;
Wu, Shixin ;
Li, Hai ;
Boey, Freddy ;
Huang, Wei ;
Chen, Peng ;
Zhang, Hua .
ACS NANO, 2010, 4 (06) :3201-3208
[5]  
Jingbo Chang, 2015, Sensing and Bio-Sensing Research, V5, P97, DOI 10.1016/j.sbsr.2015.07.009
[6]   Comparison of serum cortisol measurement by immunoassay and liquid chromatography-tandem mass spectrometry in patients receiving the 11β-hydroxylase inhibitor metyrapone [J].
Monaghan, Phillip J. ;
Owen, Laura J. ;
Trainer, Peter J. ;
Brabant, Georg ;
Keevil, Brian G. ;
Darby, Denise .
ANNALS OF CLINICAL BIOCHEMISTRY, 2011, 48 :441-446
[7]   Small-Molecule Binding Aptamers: Selection Strategies, Characterization, and Applications [J].
Ruscito, Annemaria ;
DeRosa, Maria C. .
FRONTIERS IN CHEMISTRY, 2016, 4
[8]   Recent advances in biologically sensitive field-effect transistors (BioFETs) [J].
Schöning, MJ ;
Poghossian, A .
ANALYST, 2002, 127 (09) :1137-1151
[9]   pH sensing characteristics and biosensing application of solution-gated reduced graphene oxide field-effect transistors [J].
Sohn, Il-Yung ;
Kim, Duck-Jin ;
Jung, Jin-Heak ;
Yoon, Ok Ja ;
Tien Nguyen Thanh ;
Trung Tran Quang ;
Lee, Nae-Eung .
BIOSENSORS & BIOELECTRONICS, 2013, 45 :70-76
[10]   An electrochemical aptasensor based on gold nanoparticles, thionine and hairpin structure of complementary strand of aptamer for ultrasensitive detection of lead [J].
Taghdisi, Seyed Mohammad ;
Danesh, Noor Mohammad ;
Lavaee, Parirokh ;
Ramezani, Mohammad ;
Abnous, Khalil .
SENSORS AND ACTUATORS B-CHEMICAL, 2016, 234 :462-469