The ideal fluorescent probe for bioimaging is bright, absorbs at long wavelengths and can be implemented flexibly in living cells and in vivo. However, the design of synthetic fluorophores that combine all of these properties has proved to be extremely difficult. Here, we introduce a biocompatible near-infrared silicon–rhodamine probe that can be coupled specifically to proteins using different labelling techniques. Importantly, its high permeability and fluorogenic character permit the imaging of proteins in living cells and tissues, and its brightness and photostability make it ideally suited for live-cell super-resolution microscopy. The excellent spectroscopic properties of the probe combined with its ease of use in live-cell applicatio...
hotoactivatable fluorophores are important for single-particle tracking and super-resolution microsc...
Super-resolution fluorescence microscopy is a powerful tool to visualize biomolecules and cellular s...
It is difficult to develop suitable fluorescent probes for live-cell nanoscopy, but a general strate...
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...
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...
Here we present a far-red, silicon-rhodamine-based fluorophore (SiR700) for live-cell multicolor ima...
Fluorescence microscopy is the method of choice to monitor dynamic processes in living cells due to ...
The development of novel fluorogenic probes and their use in live-cell imaging lead to a plethora of...
A series of double-fluorogenic siliconrhodamine probes were synthesized. These tetrazine-functiona...
Near-infrared fluorescent proteins are in high demand for in vivo imaging. We developed four spectra...
The near infrared (NIR) optical window between the cutoff for hemoglobin absorption at 650 nm and th...
Fluorescence microscopy is used extensively in cell-biological and biomedical research, but it is of...
Super-resolution fluorescence microscopy is a powerful tool to visualize biomolecules and cellular s...
hotoactivatable fluorophores are important for single-particle tracking and super-resolution microsc...
Super-resolution fluorescence microscopy is a powerful tool to visualize biomolecules and cellular s...
It is difficult to develop suitable fluorescent probes for live-cell nanoscopy, but a general strate...
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...
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...
Here we present a far-red, silicon-rhodamine-based fluorophore (SiR700) for live-cell multicolor ima...
Fluorescence microscopy is the method of choice to monitor dynamic processes in living cells due to ...
The development of novel fluorogenic probes and their use in live-cell imaging lead to a plethora of...
A series of double-fluorogenic siliconrhodamine probes were synthesized. These tetrazine-functiona...
Near-infrared fluorescent proteins are in high demand for in vivo imaging. We developed four spectra...
The near infrared (NIR) optical window between the cutoff for hemoglobin absorption at 650 nm and th...
Fluorescence microscopy is used extensively in cell-biological and biomedical research, but it is of...
Super-resolution fluorescence microscopy is a powerful tool to visualize biomolecules and cellular s...
hotoactivatable fluorophores are important for single-particle tracking and super-resolution microsc...
Super-resolution fluorescence microscopy is a powerful tool to visualize biomolecules and cellular s...
It is difficult to develop suitable fluorescent probes for live-cell nanoscopy, but a general strate...