NADP fluorescent probes, custom services, for the detection of intracellular reactive oxygen species

Mondo Science Updated on 2024-01-26

The NADP fluorescent probe is a bioanalytical tool that is commonly used to detect intracellular levels of reactive oxygen species (ROS). It is a fluorescent probe that can interact with NADPH and produce a strong fluorescent signal. NADP fluorescent probes have a wide range of applications and can be used to study cell signaling, drug screening, disease diagnosis, and more.

Application areas of NADP fluorescent probes:

1.Energy metabolism studies.

NADP fluorescent probes can be used to study the energy metabolism processes of organisms. For example, by measuring changes in intracellular NADP concentrations, it is possible to understand the energy metabolism of cells in different physiological states. In addition, NADP fluorescent probes can also be used to study the pathogenesis and methods of energy metabolism-related diseases.

2.Oxidative stress studies.

Oxidative stress is a factor in the development of many diseases. The NADP fluorescent probe can be used to study the changes in the concentration of NADP in the state of oxidative stress in an organism to understand the effects of oxidative stress on organisms. In addition, NADP fluorescent probes can also be used to study the mechanism of action and effects of antioxidants.

3.Cell signaling studies.

NADP fluorescent probes can be used to study changes in NADP concentrations during cell signal transduction. For example, by measuring changes in intracellular NADP concentrations, it is possible to understand how cells respond to different signal stimuli. In addition, NADP fluorescent probes can also be used to study the pathogenesis and methods of cell signaling-related diseases.

Assignment: Assignment of polyamino acid fluorescent probes.

Metalloproteinase detection probe assignment.

Firefly fluorescein probe is scheduled.

PPI probe assignment.

HRP probe scheduled.

The above information comes from Haoran MSQ2023.12.5

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