Multiplexed imaging of Förster Resonance Energy Transfer (FRET)-based biosensors potentially presents a powerful approach to monitoring the spatio-temporal correlation of signalling pathways within a single live cell. Here, we discuss the potential of homo-FRET based biosensors to facilitate multiplexed imaging. We demonstrate that the homo-FRET between pleckstrin homology domains of Akt (Akt-PH) labelled with mCherry may be used to monitor 3′-phosphoinositide accumulation in live cells and show how global analysis of time resolved fluorescence anisotropy measurements can be used to quantify this accumulation. We further present multiplexed imaging readouts of calcium concentration, using fluorescence lifetime measurements of TN-L15-a CFP/Y...
The commercial availability of multiphoton microscope systems has nurtured the growth of intravital ...
This thesis discusses the development of novel multi-dimensional fluorescence microscopy, particular...
We describe an approach to non-invasively map spatiotemporal biochemical and physiological changes i...
Multiplexed imaging of Förster Resonance Energy Transfer (FRET)-based biosensors potentially present...
We report the use of pulsed interleaved excitation (PIE)-fluorescence lifetime imaging microscopy (F...
AbstractWe report what to our knowledge is a novel approach for simultaneous imaging of two differen...
We have developed a novel method for multi-color spectral FRET analysis which is used to study a sys...
We have developed a novel method for multi-color spectral FRET analysis which is used to study a sys...
Here we present a fluctuation-based approach to biosensor Förster resonance energy transfer (FRET) d...
Fluorescence resonance energy transfer (FRET) between fluorescent proteins is a powerful tool for vi...
We present here the phasor approach to biosensor Förster resonance energy transfer (FRET) detection ...
Genetically encoded biosensors are indispensable tools in cell biology and biotechnology. However, u...
Förster resonance energy transfer (FRET) biosensors represent invaluable tools to detect the spatiot...
This thesis presents the development and application of fluorescence lifetime spectroscopy and imagi...
International audienceGenetically encoded optical biosensors become a tool of choice for quantitativ...
The commercial availability of multiphoton microscope systems has nurtured the growth of intravital ...
This thesis discusses the development of novel multi-dimensional fluorescence microscopy, particular...
We describe an approach to non-invasively map spatiotemporal biochemical and physiological changes i...
Multiplexed imaging of Förster Resonance Energy Transfer (FRET)-based biosensors potentially present...
We report the use of pulsed interleaved excitation (PIE)-fluorescence lifetime imaging microscopy (F...
AbstractWe report what to our knowledge is a novel approach for simultaneous imaging of two differen...
We have developed a novel method for multi-color spectral FRET analysis which is used to study a sys...
We have developed a novel method for multi-color spectral FRET analysis which is used to study a sys...
Here we present a fluctuation-based approach to biosensor Förster resonance energy transfer (FRET) d...
Fluorescence resonance energy transfer (FRET) between fluorescent proteins is a powerful tool for vi...
We present here the phasor approach to biosensor Förster resonance energy transfer (FRET) detection ...
Genetically encoded biosensors are indispensable tools in cell biology and biotechnology. However, u...
Förster resonance energy transfer (FRET) biosensors represent invaluable tools to detect the spatiot...
This thesis presents the development and application of fluorescence lifetime spectroscopy and imagi...
International audienceGenetically encoded optical biosensors become a tool of choice for quantitativ...
The commercial availability of multiphoton microscope systems has nurtured the growth of intravital ...
This thesis discusses the development of novel multi-dimensional fluorescence microscopy, particular...
We describe an approach to non-invasively map spatiotemporal biochemical and physiological changes i...