
AF430 amine
| Catalog Number | R01-0038 |
| Category | Alexa Fluor |
| Molecular Formula | C28H38N3F3O6S |
| Molecular Weight | 601.68 |
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Product Introduction
AF430 is a stable dye over a broad pH range (from 4 to 10) with the fluorescence peak in the yellow-green region (at 542 nm).,Conjugates of biomolecules with AF430 can be used in flow cytometry, for example in multicolor staining. AF430 is also used in cell microscopy due to its high photostability.,AF430 amine is Soluble in water and can be conjugated with electrophiles and participate in enzymatic transamination.
Chemical Information
Product Specification
Application
Chemical Information
| Purity | NMR 1H, HPLC-MS (95%) |
| Solubility | Soluble in water, DMSO, DMF |
| Appearance | Yellow solid |
Product Specification
| CF260 | 0.06 |
| CF280 | 0.06 |
| Fluorescence Quantum Yield | 0.23 |
| Excitation | 430 |
| Emission | 542 |
| Storage | 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. |
Application
AF430 amine is a reactive fluorescent dye building block supplied in an amine-functionalized form, enabling straightforward incorporation into labeling workflows where amide bond formation or dye conjugation strategies are used. Researchers rely on AF430 amine to prepare fluorescent conjugates for optical readouts in microscopy and fluorescence-based assays, leveraging its visible-region excitation/emission for routine instrument compatibility.
1. Protein And Peptide Labeling
AF430 amine is used by chemists and cell biology groups to generate fluorescently labeled proteins and peptides for imaging and binding studies. In practical workflows, the amine functionality supports dye conjugate construction that can be carried into antibody fragments, enzyme substrates, affinity ligands, or protein standards used in fluorescence assays. The resulting AF430-labeled biomolecules are commonly employed to track biomolecular interactions, monitor localization in fixed samples, and provide fluorescent reporters in assay development where a visible-range dye is advantageous for routine plate readers and microscopes.
2. Fluorescence Microscopy Tracing
AF430 amine is frequently selected for fluorescence microscopy tracing experiments that require a stable, conjugatable dye for labeling biomolecular probes and tracking them in biological specimens. Researchers incorporate the dye into fluorescent conjugates used as imaging reagents for cellular and subcellular studies, including colocalization experiments where the fluorophore's spectral position aligns with standard filter sets. Because the dye is supplied with an amine handle, it is convenient for preparing imaging reagents that can be integrated into multi-label staining panels and microscopy workflows without requiring specialized click handles.
3. Fluorescence Bioassay Reagent Preparation
AF430 amine supports fluorescence bioassay development by enabling preparation of labeled assay components such as detection reagents, tracer molecules, and fluorescent standards. Assay developers use AF430-labeled biomolecules to generate measurable fluorescence signals in plate-based formats, including binding assays and workflow controls where a conjugatable dye is needed to produce consistent reagent lots. The amine functionality also helps streamline reagent manufacturing for research-grade assay kits and protocol optimization, where reproducible fluorescent labeling of proteinaceous components is a key requirement.
4. Polymer And Surface Functionalization
AF430 amine is applied in materials and biomaterials research to introduce fluorescent functionality into polymer systems and surface-modified substrates. Teams working on fluorescent labeling of hydrogels, coatings, or biomaterial scaffolds use the amine-functionalized dye to create fluorescently tagged materials that can be imaged or quantified during material characterization. In these workflows, AF430-labeled materials serve as visual reporters for coating uniformity, diffusion/retention studies, and localization mapping on engineered surfaces using standard fluorescence microscopy and imaging instrumentation.
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