Synthesis and targeted delivery of dendrimer-based fluorescent biosensors in living HeLa cells are reported. Following electroporation dendrimers are shown to display specific subcellular localization depending on their size and surface charge and this property is preserved when they are functionalized with sensing moieties. We analyze the case of double dendrimer conjugation with pH-sensitive and pH-insensitive molecules leading to the realization of ratiometric pH sensors that are calibrated in vitro and in living cells. By tuning the physicochemical properties of the dendrimer scaffold sensors can be targeted to specific cellular compartments allowing selective pH measurements in different organelles in living cells. In order to demonstr...
Recently, ratiometric pH nanosensors have emerged as a robust tool for the fluorescence sensing and ...
Distinct subcellular pH levels, especially in lysosomes and endosomes, are essential for the degrada...
Karsten L, Gött-Zink L, Schmitz J, et al. Genetically Encoded Ratiometric pH Sensors for the Measure...
Synthesis and targeted delivery of dendrimer-based fluorescent biosensors in living HeLa cells are r...
The development of fluorescent indicators represented a revolution for life sciences. Genetically en...
BACKGROUND: The development of fluorescent proteins and synthetic molecules whose fluorescence prope...
Background: The development of fluorescent proteins and synthetic molecules whose fluorescence prope...
Background: The development of fluorescent proteins and synthetic molecules whose fluorescence prope...
\u3cp\u3eBackground: The development of fluorescent proteins and synthetic molecules whose fluoresce...
Background: The development of fluorescent proteins and synthetic molecules whose fluorescence prope...
Fluorescent proteins have been extensively used for engineering genetically encoded sensors that can...
Realtime monitoring of the cellular environment, such as the intracellular pH, in a defined cellular...
© 2015 American Chemical Society. Recently, ratiometric pH nanosensors have emerged as a robust tool...
The availability of synthetic fluorescent probes and the development of powerful new approaches to m...
Intracellular pH is a critical parameter involved in cell machinery, and its dysregulation can eithe...
Recently, ratiometric pH nanosensors have emerged as a robust tool for the fluorescence sensing and ...
Distinct subcellular pH levels, especially in lysosomes and endosomes, are essential for the degrada...
Karsten L, Gött-Zink L, Schmitz J, et al. Genetically Encoded Ratiometric pH Sensors for the Measure...
Synthesis and targeted delivery of dendrimer-based fluorescent biosensors in living HeLa cells are r...
The development of fluorescent indicators represented a revolution for life sciences. Genetically en...
BACKGROUND: The development of fluorescent proteins and synthetic molecules whose fluorescence prope...
Background: The development of fluorescent proteins and synthetic molecules whose fluorescence prope...
Background: The development of fluorescent proteins and synthetic molecules whose fluorescence prope...
\u3cp\u3eBackground: The development of fluorescent proteins and synthetic molecules whose fluoresce...
Background: The development of fluorescent proteins and synthetic molecules whose fluorescence prope...
Fluorescent proteins have been extensively used for engineering genetically encoded sensors that can...
Realtime monitoring of the cellular environment, such as the intracellular pH, in a defined cellular...
© 2015 American Chemical Society. Recently, ratiometric pH nanosensors have emerged as a robust tool...
The availability of synthetic fluorescent probes and the development of powerful new approaches to m...
Intracellular pH is a critical parameter involved in cell machinery, and its dysregulation can eithe...
Recently, ratiometric pH nanosensors have emerged as a robust tool for the fluorescence sensing and ...
Distinct subcellular pH levels, especially in lysosomes and endosomes, are essential for the degrada...
Karsten L, Gött-Zink L, Schmitz J, et al. Genetically Encoded Ratiometric pH Sensors for the Measure...