Peroxynitrite is a potent oxidizing and nitrating agent which has detrimental effects on cells by altering the structure and function of biomolecules present within. A fluorescent probe rhodamine B phenyl hydrazide (RBPH) has been proposed for peroxynitrite (ONOO-) imaging in MCF-7 cells based on its oxidation property, which converts RBPH to pink colored and highly fluorescent rhodamine B. The fluorescence emission intensity of the rhodamine B produced in the above process is linearly related to the concentration of peroxynitrite. The method obeys Beer's law in the concentration range 2-20 nM and the detection limit has been found to be 1.4 nM. The possible reaction mechanism of peroxynitrite with RBPH to produce rhodamine B has been discu...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
In this study, the far-red-emitting fluorescence probe 1, containing a rhodamine derivative and a hy...
A fluorescent probe, HKGreen-2, has been developed based on a specific reaction between ketone and p...
We present the design, synthesis, spectroscopy, and biological applications of PyBor, a new type of ...
The precise cellular function of peroxynitrite (ONOO–) in biosystems remains elusive, primarily owin...
Provided herein are improved fluorogenic compounds and probes that can be used as reagents for measu...
A novel fluorescent probe, HKGreen-3, for sensing peroxynitrite is designed on the basis of the rhod...
Peroxynitrite (ONOO<sup>–</sup>), the product of a radical combination reaction of nitric oxide and ...
The synthesis, characteristics, and biological applications of a series of new rhodamine nitroxide f...
pH and hypoxia levels are two important diagnostic biomarkers in biological systems and abnormal lev...
Peroxynitrite (ONOO–) is attracting increasing attention due to its involvement in multiple facets o...
A novel fluorescent probe for peroxynitrite, PN<sub>600</sub>, was rationally designed on the basis ...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
In this study, the far-red-emitting fluorescence probe 1, containing a rhodamine derivative and a hy...
A fluorescent probe, HKGreen-2, has been developed based on a specific reaction between ketone and p...
We present the design, synthesis, spectroscopy, and biological applications of PyBor, a new type of ...
The precise cellular function of peroxynitrite (ONOO–) in biosystems remains elusive, primarily owin...
Provided herein are improved fluorogenic compounds and probes that can be used as reagents for measu...
A novel fluorescent probe, HKGreen-3, for sensing peroxynitrite is designed on the basis of the rhod...
Peroxynitrite (ONOO<sup>–</sup>), the product of a radical combination reaction of nitric oxide and ...
The synthesis, characteristics, and biological applications of a series of new rhodamine nitroxide f...
pH and hypoxia levels are two important diagnostic biomarkers in biological systems and abnormal lev...
Peroxynitrite (ONOO–) is attracting increasing attention due to its involvement in multiple facets o...
A novel fluorescent probe for peroxynitrite, PN<sub>600</sub>, was rationally designed on the basis ...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...
Hypoxia stress causes cell damage and apoptosis by producing excessive reactive oxygen species (ROS)...