
4,4-Difluoro-8(3'-aminophenyl)-1,3,5,7-tetramethyl-4-bora-3a,4a-diaza-s-indacene | 947328-67-8
Catalog Number | F01-0066 |
Category | BODIPY |
Molecular Formula | C19H20BF2N3 |
Molecular Weight | 339.197 |
Catalog Number | Size | Price | Quantity |
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F01-0066 | -- | $-- |
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Product Introduction
BODIPY dyes are used to generate fluorescent conjugates of proteins, nucleotides, oligonucleotides and dextrans, as well as to prepare fluorescent enzyme substrates, fatty acids, phospholipids, lipopolysaccharides, receptor ligands and polystyrene microspheres.
- Product Specification
- Application
Excitation | 649 |
Emission | 667 |
Storage | Store at -20°C |
4,4-Difluoro-8(3'-aminophenyl)-1,3,5,7-tetramethyl-4-bora-3a,4a-diaza-s-indacene, more commonly known as BODIPY dye, is a fluorescent compound with a multitude of applications in scientific research and industrial sectors. Here are four key applications of BODIPY dye:
Fluorescence Microscopy: Renowned for their exceptional brightness and photostability, BODIPY dyes find extensive utility in fluorescence microscopy. These dyes can be linked to antibodies or various biomolecules for visualizing intricate cellular structures and protein distributions. Scientists employ BODIPY-labeled probes to investigate complex cellular processes like cell division and signaling pathways, achieving detailed insights with unparalleled resolution and sensitivity.
Flow Cytometry: Within the realm of flow cytometry, BODIPY dyes serve as fluorescent tags for analyzing and segregating cells and particles based on their distinctive fluorescent signatures. Leveraging BODIPY ensures precise and dependable quantification of cell populations and their unique attributes. This capability is indispensable for applications such as immunophenotyping, cell cycle assessments, and apoptosis assays, offering profound revelations into cellular dynamics and functionality.
Chemical Sensing: Employed as highly sensitive probes, BODIPY dyes are instrumental in detecting shifts in chemical compositions and environmental conditions. Their fluorescence characteristics can be modulated by specific interactions with target molecules, enabling real-time tracking of pH levels, ions, or other analytes. Scientists engineer BODIPY-based sensors for a diverse range of applications encompassing environmental monitoring, food safety protocols, and clinical diagnostics, showcasing the versatility of this compound in sensing technologies.
Photodynamic Therapy: Delving into the realm of potential applications, BODIPY derivatives are under scrutiny for their viability in photodynamic therapy (PDT), a treatment avenue for combating cancer and various ailments. These compounds boast potent absorption and fluorescence attributes, rendering them effective photosensitizers capable of generating reactive oxygen species upon light stimulation. BODIPY-based PDT exhibits the ability to selectively target and eliminate tumor cells while mitigating harm to surrounding healthy tissues, heralding a promising avenue for non-invasive cancer interventions.
Applications of Fluorescent Probes & Dyes
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