A probe DNA monolayer modified with Au nano-particles was prepared on an Au thin film and used for DNA hybridization detection by surface plasmon resonance (SPR) spectroscopy. This Au particle modified probe DNA monolayer resulted in about a 3.5 times larger SPR angle shift according to the hybridization reaction, compared to that found in a non-modified probe DNA monolayer. By comparison of the SPR image of the particle modified and non-modified probe DNA monolayer, this modification method was shown to be useful in improving the SPR signal for the detection of the unlabelled DNA molecules
We report on the development of a new platform technology for the detection of genetic variations by...
DNA microarrays are invaluable tools for biosensing applications such as diagnostic detection of DNA...
We explore periodic gold nanoposts as substrates for the enhanced surface plasmon resonance imaging ...
In this study, we demonstrate that the Au particle modified probe DNA monolayer can enhance the surf...
A novel 814 nm near-infrared surface plasmon resonance (SPR) microscope is used for the real-time de...
We have developed a new methodology to fabricate high-resolution DNA microarrays (2500 dots/cm(2)) i...
Abstract An experimental approach for improving the sensitivity of the surface plasmon resonance (SP...
Surface plasmon resonance (SPR) measurements provide a highly sensitive means for detecting biomolec...
This study demonstrates a simple and efficient strategy for the sensitivity improvement in detection...
This study demonstrates a simple and efficient strategy for the sensitivity improvement in detection...
This study demonstrates a simple and efficient strategy for the sensitivity improvement in detection...
International audienceSPRi technology is a promising method for label-free detection and quantificat...
International audienceSPRi technology is a promising method for label-free detection and quantificat...
Program for Nanomedical Science and Technology/박사Surface plasmon resonance (SPR) has been applied to...
International audienceSPRi technology is a promising method for label-free detection and quantificat...
We report on the development of a new platform technology for the detection of genetic variations by...
DNA microarrays are invaluable tools for biosensing applications such as diagnostic detection of DNA...
We explore periodic gold nanoposts as substrates for the enhanced surface plasmon resonance imaging ...
In this study, we demonstrate that the Au particle modified probe DNA monolayer can enhance the surf...
A novel 814 nm near-infrared surface plasmon resonance (SPR) microscope is used for the real-time de...
We have developed a new methodology to fabricate high-resolution DNA microarrays (2500 dots/cm(2)) i...
Abstract An experimental approach for improving the sensitivity of the surface plasmon resonance (SP...
Surface plasmon resonance (SPR) measurements provide a highly sensitive means for detecting biomolec...
This study demonstrates a simple and efficient strategy for the sensitivity improvement in detection...
This study demonstrates a simple and efficient strategy for the sensitivity improvement in detection...
This study demonstrates a simple and efficient strategy for the sensitivity improvement in detection...
International audienceSPRi technology is a promising method for label-free detection and quantificat...
International audienceSPRi technology is a promising method for label-free detection and quantificat...
Program for Nanomedical Science and Technology/박사Surface plasmon resonance (SPR) has been applied to...
International audienceSPRi technology is a promising method for label-free detection and quantificat...
We report on the development of a new platform technology for the detection of genetic variations by...
DNA microarrays are invaluable tools for biosensing applications such as diagnostic detection of DNA...
We explore periodic gold nanoposts as substrates for the enhanced surface plasmon resonance imaging ...