Dissertation > Excellent graduate degree dissertation topics show
Study on Biosensors Based on Amplification of Nanoparticals
Author: LiGang
Tutor: YuFengLi
School: Qingdao University of Science and Technology
Course: Physical and chemical
Keywords: Au nanoparticles Apoferritin Si nanoparticle Ramos cells Biosensor
CLC: TP212.3
Type: Master's thesis
Year: 2011
Downloads: 78
Quote: 0
Read: Download Dissertation
Abstract
|
With the rapid development of nanotechnologies, nanometer materials with unique optical and electrical properties have been widely used in bioanalysis. Three novel biosensors have been developed signal amplification of nanoparticals for the detection of DNA, adenosine and Ramos, respectively.1. Metal cadmium has been encapsulated in the apoferritin cavity by using dissociation and reconstitution characteristics at different pH of apoferritin. Au NPs were incorporated with marker-loaded apoferritin NPs. The conjugates were used as probe for DNA detection. With the dual-amplicification of Au NPs and marker-loaded apoferritin NPs, the sensor has high sensivity. Under the optimum conditions, the linear range was from 3.0 10 16 to 1.0 10 14 M and the detection limit was 5.1 10 17 M.2. A aptasensor for the assay of adenosine based on signal probe with ruthenium(II) modified Au nanoparticles was developed. Ru(II) complex were bound on Au NPs, and conjutaed with signal DAN to form the aptamer recognition probe. By using the specific recognization of aptamer and adenosine, the adenosine molecule could be detected. Take advantages of signal amplification of Au NPs, the sensor has exhibited good sensitivity. Under the optimum conditions, the linear range for the detection of adenosine was from 6.0×10-12 to 1.0×10-10 mo1·L-1. The sensor also exhibited excellent selectivity. 3. A sensitive and stable aptasensor for the assay of tumor cells based on signal amplification with novel ruthenium(II) covalently doped silica nanoparticles (Si NPs) was developed. Take advantages of signal amplification and high stability of the covalently doped Si NPs, the sensor has exhibited not only good sensitivity but also excellent stability. Under the optimum conditions, the linear range was from 100 to 2000 cells mL-1 and the detection limit was 100 cells mL-1 for the Ramos cells. The sensor has exhibited excellent selectivity and reproducibility.
|
Related Dissertations
- Study on Influential Factor to Methane Metabolic of Methane-utilizing Bacteria and Methoanol Detection Method,Q93
- The Application of Ordered Mesoporous Carbon and Glod Nanoparticles Composite in Bioensor,TB383.1
- Preparation of Gold and Silver Core-Shell Nanostructure and Their Localized Surface Plasmon Resonance for Sensing,TB383.1
- Research of Dual-channel DNA Electrochemical Biosensor,TP212.3
- Investigation of SPR Waveguide Sensor Based on Angular Interrogation,TN256
- Research on the Optical Properties of Triangular Plate-like Au/Ag Nanoparticles and Their Applications in Optical Bio-imaging,O482.3
- Design of Software System for Automatic Multifunctional Cell Physiological Analyzer,TP212.3
- Design and Fabrication of Porous Silicon Microcavities and Realization of Multichannel System,TP212.3
- Research on the Role Enhancing SPR Sensor’s Sensitivity by Gold Nanorods,TP212.3
- Study on the Fabrication and Electrochemical Biosensor Properties of TiO2 Nanotubes Arrays Modified Electrode,TP212.3
- Direct Electrochemistry of Proteins on CdTe Quantum Dots,O646
- Biosensor Based on Lipid Bilayers Modified by Au Nanoparticle for the Electrochemical Detection of Penicillin G Residues in Milk,TP212.3
- Three parameters of human stress detection system,R318.0
- Expression of Cytochrome P450 in Prokaryotic System and Its Application in Biosensing for Endocrine Disrupting Chemical Bisphenol a,R114
- The Rapid Toxicity Testing Based on Luciferase and the Study of on-line Toxicity Biosensor,X85
- Inorganic Fuctionl Nanomaterials Controllble Electrochemical Systhesis Characteriztion and Application,TB383.1
- Study and Application of Composite Materials Based on Perovskite Nanoparticles,TB332
- Rapid Detection of Zoonotic Pathogens Using Leaky Surface Acoustic Biosensor and Rolling Circle Amplification,R440
- Based graphene material , a Novel DNA biosensor,TP212.2
- Organic-inorganic hybrid materials and nanomaterials immobilized enzyme electrochemical biosensors,TP212.3
- High-level Expression of Cytochrome P450 in Prokaryotic System and Its Application in Biosensing for Persistent Organic Pollutants,Q78
CLC: > Industrial Technology > Automation technology,computer technology > Automation technology and equipment > Automation components,parts > Transmitter ( converter),the sensor > Biological sensors,medical sensors
© 2012 www.DissertationTopic.Net Mobile
|