
BDP TR methyl ester, 5 mM in DMSO
| Catalog Number | F01-0026 |
| Category | BODIPY |
| Molecular Formula | C22H17BF2N2O3S |
| Molecular Weight | 438.26 |
* Please be kindly noted products are not for therapeutic use. We do not sell to patients.
Product Introduction
BDP TR methyl ester, 5 mM in DMSO, is a fluorescent dye characterized by its borondipyrromethene (BODIPY) core, which is known for its high fluorescence quantum yield and photostability. This compound features a methyl ester group that facilitates its incorporation into various biomolecular environments, enhancing its utility in fluorescence microscopy and flow cytometry applications. The dye's spectral properties allow it to participate in Förster Resonance Energy Transfer (FRET) experiments, serving as both a donor and acceptor in energy transfer processes, which are pivotal in studying molecular interactions and dynamics.
Chemical Information
Product Specification
Application
Chemical Information
| Purity | NMR 1H, HPLC-MS (95%) |
| Appearance | blue solution |
Product Specification
| ε, L⋅mol-1⋅cm-1 | 69000 |
| Fluorescence Quantum Yield | 0.9 |
| Excitation | 589 |
| Emission | 616 |
| Storage | 24 months after receival at -20°C in the dark. Transportation: at room temperature for up to 3 weeks. Avoid prolonged exposure to light. Desiccate. |
Application
BDP TR methyl ester, 5 mM in DMSO is a red-emitting BODIPY-based fluorescent dye provided as a cell-permeable ester that is widely used for fluorescent labeling and imaging workflows where intracellular retention and strong signal are needed. In common staining and probe-construction workflows, the ester form supports uptake and subsequent intracellular conversion to a more fluorescent species, enabling visualization of labeled biomolecules or incorporation into experimental readouts compatible with standard fluorescence microscopes and plate readers.
1. Fluorescence Microscopy Labeling
BDP TR methyl ester, 5 mM in DMSO is frequently used by cell biology and imaging laboratories to generate red fluorescence signals for cellular visualization. Researchers typically incorporate the dye into staining workflows to label intracellular components or to track uptake and localization in fixed or prepared samples, leveraging its bright BODIPY emission for clear contrast against cellular autofluorescence. The dye's red spectral output makes it practical for multicolor imaging panels when paired with green or far-red channels on common microscope platforms.
2. Flow Cytometry Dye Tracing
BDP TR methyl ester, 5 mM in DMSO supports fluorescence-based sample characterization in flow cytometry workflows that require a stable red reporter for population-level readouts. In materials and cell analytics settings, the dye is used to label cells or to follow dye uptake and retention across experimental conditions, including time-course studies and comparative staining experiments. Its BODIPY-derived emission is often selected when researchers need a robust fluorescence signal that can be gated reliably using standard cytometer filter sets for red channels.
3. Fluorescent Bioassay Development
BDP TR methyl ester, 5 mM in DMSO is used in fluorescence assay development where a red-emitting reporter is advantageous for monitoring labeled reagents, reaction endpoints, or signal readouts in plate-based formats. Assay developers often use the dye as a fluorescent tag to support endpoint measurements and comparative screening experiments, taking advantage of BODIPY brightness to improve visual detectability in microplate readers. The dye's ester functionality also makes it convenient for designing labeling strategies that rely on intracellular or compartmentalized signal generation in assay formats that include biological samples.
4. Fluorescent Probe Construction
BDP TR methyl ester, 5 mM in DMSO is commonly used as a fluorescent building block for constructing labeled research tools, including fluorescent conjugates and imaging reagents where a BODIPY TR fluorophore is desired. In chemical biology and biomaterials labs, the dye is incorporated into labeling schemes to create fluorescent reporters for visualization of tagged biomolecules or for tracking labeled components within complex systems. Researchers value its red emission and dye-like performance when building custom probe conjugates for microscopy, imaging assays, and fluorescence-based characterization of labeled materials.
Recommended Services
Recommended Articles
- Hoechst Dyes: Definition, Structure, Mechanism and Applications
- Mastering the Spectrum: A Comprehensive Guide to Cy3 and Cy5 Dyes
- Fluorescent Probes: Definition, Structure, Types and Application
- Fluorescent Dyes: Definition, Mechanism, Types and Application
- Coumarin Dyes: Definition, Structure, Benefits, Synthesis and Uses
- Unlocking the Power of Fluorescence Imaging: A Comprehensive Guide
- Cell Imaging: Definitions, Systems, Protocols, Dyes, and Applications
- Lipid Staining: Definition, Principles, Methods, Dyes, and Uses
- Flow Cytometry: Definition, Principles, Protocols, Dyes, and Uses
- Nucleic Acid Staining: Definition, Principles, Dyes, Procedures, and Uses
Recommended Products
Online Inquiry