Cell-permeable phosphorescent probes enable the study of cell and tissue oxygenation, bioenergetics, metabolism, and pathological states such as stroke and hypoxia. A number of such probes have been described in recent years, the majority consisting of cationic small molecule and nanoparticle structures. While these probes continue to advance, adequate staining for the study of certain cell types using live imaging techniques remains elusive; this is particularly true for neural cells. Here we introduce novel probes for the analysis of neural cells and tissues: negatively charged poly(methyl methacrylate-co-methacrylic acid)-based nanoparticles impregnated with a phosphorescent Pt(II)-tetrakis(pentafluorophenyl)porphyrin (PtPFPP) dye (this ...
Published in final edited form as: Nat Methods. 2010 September ; 7(9): 755–759. doi:10.1038/nmeth.1...
The imaging of real-time fluxes of K+ ions in live cell with high dynamic range (5-150 x 10(-3) m) i...
The ability to resolve the spatio-temporal complexity of intracellular O2 distribution is the "Holy ...
Cell-permeable phosphorescent probes enable the study of cell and tissue oxygenation, bioenergetics,...
Monitoring cell and tissue oxygenation is important for the analysis of cell development and differe...
Monitoring of oxygenation is important for physiological experiments investigating the growth, diffe...
Cell-penetrating phosphorescence based probes allow real-time, high-resolution imaging of O2 concent...
High brightness, chemical and photostability, tunable characteristics, and spectral and surface prop...
High brightness, chemical and photostability, tunable characteristics, and spectral and surface prop...
Multi-modal probes allow for flexible choice of imaging equipment when performing quenched-phosphore...
In the last decade a number of cell-permeable phosphorescence based probes for imaging of (intra) ce...
The cell-penetrating O-2-sensing probes based on phosphorescent Pt-porphyrins provide a means to acc...
Measurements of oxygen partial pressure (pO(2)) with high temporal and spatial resolution in three d...
The supply of oxygen (O-2) to respiring tissue, cells, and mitochondria regulates metabolism, gene e...
Oxygen is a critical component for many physiological and pathological processes in living cells.[1,...
Published in final edited form as: Nat Methods. 2010 September ; 7(9): 755–759. doi:10.1038/nmeth.1...
The imaging of real-time fluxes of K+ ions in live cell with high dynamic range (5-150 x 10(-3) m) i...
The ability to resolve the spatio-temporal complexity of intracellular O2 distribution is the "Holy ...
Cell-permeable phosphorescent probes enable the study of cell and tissue oxygenation, bioenergetics,...
Monitoring cell and tissue oxygenation is important for the analysis of cell development and differe...
Monitoring of oxygenation is important for physiological experiments investigating the growth, diffe...
Cell-penetrating phosphorescence based probes allow real-time, high-resolution imaging of O2 concent...
High brightness, chemical and photostability, tunable characteristics, and spectral and surface prop...
High brightness, chemical and photostability, tunable characteristics, and spectral and surface prop...
Multi-modal probes allow for flexible choice of imaging equipment when performing quenched-phosphore...
In the last decade a number of cell-permeable phosphorescence based probes for imaging of (intra) ce...
The cell-penetrating O-2-sensing probes based on phosphorescent Pt-porphyrins provide a means to acc...
Measurements of oxygen partial pressure (pO(2)) with high temporal and spatial resolution in three d...
The supply of oxygen (O-2) to respiring tissue, cells, and mitochondria regulates metabolism, gene e...
Oxygen is a critical component for many physiological and pathological processes in living cells.[1,...
Published in final edited form as: Nat Methods. 2010 September ; 7(9): 755–759. doi:10.1038/nmeth.1...
The imaging of real-time fluxes of K+ ions in live cell with high dynamic range (5-150 x 10(-3) m) i...
The ability to resolve the spatio-temporal complexity of intracellular O2 distribution is the "Holy ...