研究目的
To develop a high-performance biosensor for the detection of HIV-1 Tat protein using split RNA aptamer on a multiwall carbon nanotube-modified field-effect transistor.
研究成果
The fabricated biosensor demonstrated high specificity and sensitivity towards HIV-1 Tat protein, with a detection limit of 600 pM. The device showed minimal interference from other HIV proteins, indicating its potential for early HIV diagnosis.
研究不足
The study's limitations include the manual control of the spray technique for MWCNT deposition, which may lead to variations in the fMWCNT layer texture and active site densities. Additionally, the specificity and sensitivity of the device may be affected by the presence of other HIV proteins in real samples.
1:Experimental Design and Method Selection:
The study involved the functionalization of MWCNTs with carboxyl functional groups through acid oxidation, followed by their deposition on the channel of a FET device for RNA aptamer immobilization and HIV-1 Tat detection.
2:Sample Selection and Data Sources:
MWCNTs were purchased from Fibermax Composites, and HIV-1 Tat proteins were obtained from Immuno Diagnostics.
3:List of Experimental Equipment and Materials:
Instruments included a JSM-6010LV SEM, Supra 35vp FESEM, K-Alpha Surface Analysis XPS, and D2 Phaser XRD. Chemicals included nitric acid, sulfuric acid, and RNA aptamers synthesized by Trilink Biotech.
4:Experimental Procedures and Operational Workflow:
MWCNTs were functionalized, characterized, and deposited on FET devices. Aptamer immobilization and HIV-1 Tat detection were performed, with electrical signals recorded.
5:Data Analysis Methods:
Electrical signal detections were recorded and analyzed using Keithley source meters.
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JSM-6010LV Scanning Electron Microscope
JSM-6010LV
Jeol
Used for the characterization of MWCNT-FET.
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Supra 35vp Field Emission Scanning Electron Microscope
Supra 35vp
Zeiss
Used for the characterization of MWCNT-FET.
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K-Alpha Surface Analysis X-ray Photoelectron Spectroscopy
K-Alpha
Thermo Scientific
Used for the characterization of MWCNT-FET.
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D2 Phaser X-ray Diffraction
D2 Phaser
Bruker
Used for the characterization of MWCNT-FET.
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MWCNTs
Length of 1–25 μm, diameter of 10–40 nm
Fibermax Composites
Used as a transducer layer on FET device for biomolecule immobilization and interaction.
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SOI wafer
150 mm Si substrate, 150 nm buried oxide layer, and 100 nm top Si layer
Shin-Etsu
Used as a substrate for the fabrication of the FET device.
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Keithley source meter
2400 and 6487
Keithley Instruments
Used for electrical signal detections.
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