Fluorescent nucleobase analogues (FBAs) have many desirable features in comparison to extrinsic fluorescent labels, but they are yet to find application in ultrasensitive detection. Many of the disadvantages of FBAs arise from their short excitation wavelengths (often in the ultraviolet), making two-photon excitation a potentially attractive approach. Pentacyclic adenine (pA) is a recently developed FBA that has an exceptionally high two-photon brightness. We have studied the two-photon-excited fluorescence properties of pA and how they are affected by incorporation in DNA. We find that pA is more photostable under two-photon excitation than via resonant absorption. When incorporated in an oligonucleotide, pA has a high two-photon cross sec...
Fluorescent probes are essential tools for studying biological systems. The last decade has witnesse...
Single-molecule fluorescence microscopy is a method that allows the fluorescence signal from individ...
The fluorescent adenine analogue qAN4 was recently shown to possess promising photophysical properti...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Five isomorphic fluorescent uridine mimics have been subjected to two-photon (2P) excitation analysi...
Fluorescent nucleobase surrogates capable of Watson–Crick hydrogen bonding are essential probes of n...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
6MAP is a fluorescent analogue of adenine that undergoes Watson-Crick base pairing and base stacking...
The ability to routinely detect fluorescent nucleobase analogues at the single-molecule level would ...
Five isomorphic fluorescent uridine mimics have been subjected to two-photon (2P) excitation analysi...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
This thesis focuses on the design, synthesis and utilization of fluorescent nucleobase analogues (FB...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
The ability to routinely detect fluorescent nucleobase analogues at the single-molecule level would ...
Fluorescent probes are essential tools for studying biological systems. The last decade has witnesse...
Single-molecule fluorescence microscopy is a method that allows the fluorescence signal from individ...
The fluorescent adenine analogue qAN4 was recently shown to possess promising photophysical properti...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Five isomorphic fluorescent uridine mimics have been subjected to two-photon (2P) excitation analysi...
Fluorescent nucleobase surrogates capable of Watson–Crick hydrogen bonding are essential probes of n...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
6MAP is a fluorescent analogue of adenine that undergoes Watson-Crick base pairing and base stacking...
The ability to routinely detect fluorescent nucleobase analogues at the single-molecule level would ...
Five isomorphic fluorescent uridine mimics have been subjected to two-photon (2P) excitation analysi...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
This thesis focuses on the design, synthesis and utilization of fluorescent nucleobase analogues (FB...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
Emissive base analogs are powerful tools for probing nucleic acids at the molecular level. Herein we...
The ability to routinely detect fluorescent nucleobase analogues at the single-molecule level would ...
Fluorescent probes are essential tools for studying biological systems. The last decade has witnesse...
Single-molecule fluorescence microscopy is a method that allows the fluorescence signal from individ...
The fluorescent adenine analogue qAN4 was recently shown to possess promising photophysical properti...