Fluorescence microscopy is the method of choice to monitor dynamic processes in living cells due to its non-invasive nature. A variety of different fluorophores and labeling systems are currently used to selectively visualise structures or biomolecules of interest. However, recent progress in the field of fluorescence microscopy towards super-resolution microscopy (SRM) has increased the requirements for fluorophores, as well as labeling strategies. In order to make these techniques available for routine live-cell imaging, brighter, cell-permeable fluorophores and adequate labeling strategies are necessary. This thesis explores methods to improve both fields through developing a new photoactivatable fluorophore, as well as optimising the se...
The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be impleme...
A range of bright and photostable rhodamines and carbopyronines with absorption maxima in the range ...
The development of novel fluorogenic probes and their use in live-cell imaging lead to a plethora of...
Photoactivatable fluorophores are important for single-particle tracking and super-resolution micros...
hotoactivatable fluorophores are important for single-particle tracking and super-resolution microsc...
Here we present a far-red, silicon-rhodamine-based fluorophore (SiR700) for live-cell multicolor ima...
Here we present a far-red, silicon-rhodamine-based fluorophore (SiR700) for live-cell multicolor ima...
Super-resolution microscopy requires that subcellular structures are labeled with bright and photost...
Here we present a far-red, silicon-rhodamine-based fluorophore (SiR700) for live-cell multicolor ima...
Super-resolution microscopy requires that subcellular structures are labeled with bright and photost...
The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be impleme...
The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be impleme...
Super-resolution microscopy requires that subcellular structures are labeled with bright and photost...
Fluorescence microscopy is a powerful method to examine cellular structures and biological processes...
The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be impleme...
The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be impleme...
A range of bright and photostable rhodamines and carbopyronines with absorption maxima in the range ...
The development of novel fluorogenic probes and their use in live-cell imaging lead to a plethora of...
Photoactivatable fluorophores are important for single-particle tracking and super-resolution micros...
hotoactivatable fluorophores are important for single-particle tracking and super-resolution microsc...
Here we present a far-red, silicon-rhodamine-based fluorophore (SiR700) for live-cell multicolor ima...
Here we present a far-red, silicon-rhodamine-based fluorophore (SiR700) for live-cell multicolor ima...
Super-resolution microscopy requires that subcellular structures are labeled with bright and photost...
Here we present a far-red, silicon-rhodamine-based fluorophore (SiR700) for live-cell multicolor ima...
Super-resolution microscopy requires that subcellular structures are labeled with bright and photost...
The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be impleme...
The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be impleme...
Super-resolution microscopy requires that subcellular structures are labeled with bright and photost...
Fluorescence microscopy is a powerful method to examine cellular structures and biological processes...
The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be impleme...
The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be impleme...
A range of bright and photostable rhodamines and carbopyronines with absorption maxima in the range ...
The development of novel fluorogenic probes and their use in live-cell imaging lead to a plethora of...