
BODIPY FL, STP Ester, Sodium Salt
Catalog Number | F01-0165 |
Category | BODIPY |
Molecular Formula | C20H14BF6N2NaO5S |
Molecular Weight | 542.19 |
* Please be kindly noted products are not for therapeutic use. We do not sell to patients.
Product Introduction
BODIPY FL, STP Ester, Sodium Salt is a green-fluorescent dye that is reactive with primary amines on peptides, proteins, modified nucleotides, biopolymers and other amine-containing biomolecules. The water solubility is improved by STP ester compared to NHS esters.
Chemical Information
Application
Synonyms | EverFluor FL, STP Ester, Sodium Salt |
Appearance | Solid Powder |
BODIPY FL STP Ester Sodium Salt is a fluorescent dye known for its bright fluorescence and stability, useful in various biological applications. Here are some key applications of BODIPY FL STP Ester Sodium Salt:
Fluorescent Labeling: BODIPY FL is employed as a fluorescent label in various biological assays and imaging techniques. Its brightness and photo-stability make it ideal for labeling proteins, nucleic acids, and cellular components. This allows researchers to track and visualize molecular interactions and cellular processes in real-time with high precision.
Flow Cytometry: In flow cytometry, BODIPY FL is used to stain cells for analysis of their physical and chemical characteristics. It provides high fluorescence intensity, enhancing the detection of specific cell populations and facilitating accurate quantification. This is crucial for applications such as immunophenotyping and cell sorting in research and clinical diagnostics.
Confocal Microscopy: BODIPY FL is widely used in confocal microscopy due to its ability to provide sharp and distinct fluorescent images. Its spectral properties allow for multiplexing with other fluorescent dyes, enabling detailed multi-color imaging. This application is vital for studying subcellular structures and dynamic cellular events with high spatial resolution.
Environmental Sensing: BODIPY FL can be used to create sensors for detecting environmental changes such as pH or metal ion concentrations. By incorporating BODIPY FL into sensor platforms, researchers can exploit its fluorescence changes to provide real-time monitoring of environmental parameters. This is significant for applications in environmental monitoring, biosensing, and analytical chemistry.
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