We successfully synthesized a fluorescent probe capable of detecting the cancer-associated NAD(P)H:quinoneoxidoreductase isozyme-1 within human cells, based on results from an investigation of the stability of various rhodamines and seminaphthorhodamines toward the biological reductant NADH, present at ∼100–200 μM within cells. While rhodamines are generally known for their chemical stability, we observe that NADH causes significant and sometimes rapid modification of numerous rhodamine analogues, including those oftentimes used in imaging applications. Results from mechanistic studies lead us to rule out a radical-based reduction pathway, suggesting rhodamine reduction by NADH proceeds by a hydride transfer process to yield the reduced l...
The synthesis, characteristics, and biological applications of a series of new rhodamine nitroxide f...
A novel rhodamine nitroxide probe was synthesized for monitoring the cellular redox environment base...
A novel, fluorescent NAD derivative is processed as substrate by three different NAD-consuming enzym...
Enzyme-responsive probes, whose fluorescence signature is selectively and uniquely changed upon acti...
Fluorescence molecular imaging is an emerging field with potential to aid in optically guided surger...
© 2015 American Chemical Society. Achieving highly selective and sensitive detection/visualization o...
A new quinone propionic acid-cloaked rhodamine fluorophore has its fluorescence revealed (de-cloaked...
Achieving the vision of identifying and quantifying cancer-related events and targets for future per...
Achieving the vision of identifying and quantifying cancer-related events and targets for future per...
Achieving the vision of identifying and quantifying cancer-related events and targets for future per...
Achieving highly selective and sensitive detection/visualization of intracellular biological events ...
A near-infrared fluorescent probe was prepared for selective detection of reduced nicotinamide adeni...
Sensing of intracellular NAD(P)H is important for numerous applications ranging from diagnostic assa...
Sensing of intracellular NAD(P)H is important for numerous applications ranging from diagnostic assa...
Sensing of intracellular NAD(P)H is important for numerous applications ranging from diagnostic assa...
The synthesis, characteristics, and biological applications of a series of new rhodamine nitroxide f...
A novel rhodamine nitroxide probe was synthesized for monitoring the cellular redox environment base...
A novel, fluorescent NAD derivative is processed as substrate by three different NAD-consuming enzym...
Enzyme-responsive probes, whose fluorescence signature is selectively and uniquely changed upon acti...
Fluorescence molecular imaging is an emerging field with potential to aid in optically guided surger...
© 2015 American Chemical Society. Achieving highly selective and sensitive detection/visualization o...
A new quinone propionic acid-cloaked rhodamine fluorophore has its fluorescence revealed (de-cloaked...
Achieving the vision of identifying and quantifying cancer-related events and targets for future per...
Achieving the vision of identifying and quantifying cancer-related events and targets for future per...
Achieving the vision of identifying and quantifying cancer-related events and targets for future per...
Achieving highly selective and sensitive detection/visualization of intracellular biological events ...
A near-infrared fluorescent probe was prepared for selective detection of reduced nicotinamide adeni...
Sensing of intracellular NAD(P)H is important for numerous applications ranging from diagnostic assa...
Sensing of intracellular NAD(P)H is important for numerous applications ranging from diagnostic assa...
Sensing of intracellular NAD(P)H is important for numerous applications ranging from diagnostic assa...
The synthesis, characteristics, and biological applications of a series of new rhodamine nitroxide f...
A novel rhodamine nitroxide probe was synthesized for monitoring the cellular redox environment base...
A novel, fluorescent NAD derivative is processed as substrate by three different NAD-consuming enzym...