Raman probes have attracted widespread attention for the visualization and identification of biomolecules, because they can be applied to identify detailed chemical structures, detect multiple molecules simultaneously, and visualize cellular functional molecules. However, the biological application of Raman probes is still limited because of their weak signal intensity. Herein, we present a molecular system that shows an enhanced Raman signal using a nonfluorescent dye. We introduced a DABCYL molecule bearing an acetylene unit into thymidine at the 5-position. The resulting modified nucleobase, dDAU, showed a robust signal around 2200 cm–1, which was attributed to the acetylene unit, due to resonance Raman induced by the DABCYL group. We fu...
The development of novel DNA sequencing methods is one of the ongoing challenges in various fields o...
Background: One of the main challenges in biomedicine is improvement of detection sensitivity to ach...
We present surface-enhanced Raman scattering (SERS) studies of DNA nucleosides using biologically be...
A simple, ultrasensitive, highly selective, and reagent-free aptamer-based biosensor has been develo...
A novel aptasensor platform has been developed for quantitative detection of adenosine triphosphate ...
Raman spectroscopy is a powerful optical technique based on the inelastic scattering of incident lig...
We present a new type of nanoparticle-based DNA sensor using surface-enhanced Raman scattering (SERS...
Biomedical sciences are in need of more versatile and more sensitive approaches for research and als...
Optical detection and conformational mapping of aptamers are important for improving medical and bio...
Rapid, sensitive, and accurate detection of adenosine triphosphate (ATP), the primary energy molecul...
Direct, label-free detection of unmodified DNA is a great challenge for DNA analyses. Surface-enhanc...
DNA and amino acids are important biomolecules in living organisms. Probing such biomolecules with s...
Alkynes can be metabolically incorporated into biomolecules including nucleic acids, proteins, lipid...
We show that label-free detection of picomole amounts of the four nucleobases, respectively, adsorbe...
Surface-enhanced Raman spectroscopy (SERS) has been used in a variety of biological applications due...
The development of novel DNA sequencing methods is one of the ongoing challenges in various fields o...
Background: One of the main challenges in biomedicine is improvement of detection sensitivity to ach...
We present surface-enhanced Raman scattering (SERS) studies of DNA nucleosides using biologically be...
A simple, ultrasensitive, highly selective, and reagent-free aptamer-based biosensor has been develo...
A novel aptasensor platform has been developed for quantitative detection of adenosine triphosphate ...
Raman spectroscopy is a powerful optical technique based on the inelastic scattering of incident lig...
We present a new type of nanoparticle-based DNA sensor using surface-enhanced Raman scattering (SERS...
Biomedical sciences are in need of more versatile and more sensitive approaches for research and als...
Optical detection and conformational mapping of aptamers are important for improving medical and bio...
Rapid, sensitive, and accurate detection of adenosine triphosphate (ATP), the primary energy molecul...
Direct, label-free detection of unmodified DNA is a great challenge for DNA analyses. Surface-enhanc...
DNA and amino acids are important biomolecules in living organisms. Probing such biomolecules with s...
Alkynes can be metabolically incorporated into biomolecules including nucleic acids, proteins, lipid...
We show that label-free detection of picomole amounts of the four nucleobases, respectively, adsorbe...
Surface-enhanced Raman spectroscopy (SERS) has been used in a variety of biological applications due...
The development of novel DNA sequencing methods is one of the ongoing challenges in various fields o...
Background: One of the main challenges in biomedicine is improvement of detection sensitivity to ach...
We present surface-enhanced Raman scattering (SERS) studies of DNA nucleosides using biologically be...