Super-resolution imaging provides a powerful approach to image dynamic biomolecule events at nanoscale resolution. An ingenious method involving tuning intramolecular spirocyclization in rhodamine offers an appealing strategy to design cell-permeable fluorogenic probes for super-resolution imaging. Nevertheless, precise control of rhodamine spirocyclization presents a significant challenge. Through detailed study of the structure–activity relationship, we identified that multiple key factors control rhodamime spirocyclization. The findings provide opportunities to create fluorogenic probes with tailored properties. On the basis of our findings, we constructed self-assembling rhodamine probes for no-wash live-cell confocal and super-resoluti...
The development of novel fluorogenic probes and their use in live-cell imaging lead to a plethora of...
Live-cell single-molecule localization microscopy has advanced with the development of self-blinking...
Abstract Live-cell RNA imaging with high spatial and temporal resolution remains a major challenge. ...
Super-resolution imaging provides a powerful approach to image dynamic biomolecule events at nanosca...
Super-resolution imaging provides a powerful approach to image dynamic biomolecule events at nanosca...
Super-resolution imaging provides a powerful approach to image dynamic biomolecule events at nanosca...
Rhodamines are the most important class of fluorophores for applications in live-cell fluorescence m...
Spatial resolution in far-field fluorescence microscopy is limited by diffraction to about 200 nm. W...
Spatial resolution in far-field fluorescence microscopy is limited by diffraction to about 200 nm. W...
Spatial resolution in far-field fluorescence microscopy is limited by diffraction to about 200 nm. W...
Fluorescence microscopy is a powerful method to examine cellular structures and biological processes...
Rhodamine derivatives and analogues have been widely used for different super-resolution imaging tec...
Rhodamine derivatives and analogues have been widely used for different super-resolution imaging tec...
Rhodamine derivatives and analogues have been widely used for different super-resolution imaging tec...
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...
Live-cell single-molecule localization microscopy has advanced with the development of self-blinking...
Abstract Live-cell RNA imaging with high spatial and temporal resolution remains a major challenge. ...
Super-resolution imaging provides a powerful approach to image dynamic biomolecule events at nanosca...
Super-resolution imaging provides a powerful approach to image dynamic biomolecule events at nanosca...
Super-resolution imaging provides a powerful approach to image dynamic biomolecule events at nanosca...
Rhodamines are the most important class of fluorophores for applications in live-cell fluorescence m...
Spatial resolution in far-field fluorescence microscopy is limited by diffraction to about 200 nm. W...
Spatial resolution in far-field fluorescence microscopy is limited by diffraction to about 200 nm. W...
Spatial resolution in far-field fluorescence microscopy is limited by diffraction to about 200 nm. W...
Fluorescence microscopy is a powerful method to examine cellular structures and biological processes...
Rhodamine derivatives and analogues have been widely used for different super-resolution imaging tec...
Rhodamine derivatives and analogues have been widely used for different super-resolution imaging tec...
Rhodamine derivatives and analogues have been widely used for different super-resolution imaging tec...
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...
Live-cell single-molecule localization microscopy has advanced with the development of self-blinking...
Abstract Live-cell RNA imaging with high spatial and temporal resolution remains a major challenge. ...