
DMNP-EDTA AM
| Catalog Number | A14-0098 |
| Category | Calcium, Chloride and Other indicators |
| Molecular Formula | C30H39N3O20 |
| Molecular Weight | 761.66 |
* Please be kindly noted products are not for therapeutic use. We do not sell to patients.
Product Introduction
DMNP-EDTA AM is a cell-permeant caged calcium compound for intracellular photorelease of Ca2+. Used for live-cell calcium imaging and signaling research.
Application
Application
DMNP-EDTA AM is a chelator-bearing fluorescent labeling reagent designed to coordinate metal ions through the EDTA motif while providing a fluorescence handle for metal-associated staining and imaging workflows. In practice, DMNP-EDTA AM is used to build metal-responsive fluorescent conjugates and to support fluorescence readouts in assays and imaging experiments where controlled metal binding is required. The reagent format enables downstream conjugation to biomolecules, polymers, or surfaces, supporting research-grade development of metal-linked probes and staining reagents.
1. Metal-Linked Fluorescent Labeling
DMNP-EDTA AM is used to generate fluorescent labeling reagents that associate with metal ions via EDTA chelation, enabling researchers to visualize or track metal-containing species in chemical biology and materials research. Teams working on metal-dependent binding studies, metal-tagged biomolecule formats, or metal-mediated assembly processes often incorporate this reagent into fluorescent conjugates to provide a stable fluorescence signal tied to metal coordination. The "AM" functionalization supports convenient incorporation into labeling workflows where a fluorescent tag is needed alongside metal binding capacity, supporting microscopy and plate-based fluorescence readouts in metal-focused experimental designs.
2. Bioconjugation For Metal Probes
DMNP-EDTA AM is frequently selected for constructing metal-binding fluorescent probes and conjugates for biomolecule labeling, including metal-associated affinity reagents and metal-tagged detection tools used in research assays. Chemical biology groups can use the EDTA chelation functionality to couple a fluorescent reporter to metal-ion handling steps, such as preparing metal-decorated conjugates for binding studies or creating probe reagents that report on metal availability in controlled buffers. This approach is commonly applied when researchers need a fluorescent reporter that remains associated with a metal-binding motif rather than relying on nonspecific metal adsorption.
3. Fluorescence Imaging Of Metal Binding
DMNP-EDTA AM supports fluorescence microscopy experiments aimed at mapping metal binding or metal-associated localization in experimental systems where chelation-driven association is the key functional requirement. Imaging-focused users incorporate the reagent into fluorescent staining or probe preparation workflows to visualize metal-associated regions in materials, biomaterials, or model biological assemblies. Because the reagent couples a chelator unit to a fluorescent reporter, it is used to link fluorescence signal distribution to metal coordination events, supporting qualitative and semi-quantitative imaging of metal-linked features under defined experimental conditions.
4. Biomaterials And Surface Functionalization
DMNP-EDTA AM is applied in biomaterials science and surface chemistry workflows where fluorescent metal-chelating functionalities are introduced onto polymers, coatings, or engineered materials. Researchers use the reagent to create fluorescently traceable surfaces that can interact with metal ions through the EDTA binding motif, enabling studies of metal uptake, surface adsorption behavior, and metal-mediated material interactions. In these settings, DMNP-EDTA AM helps provide a fluorescent handle for monitoring metal-associated processes on engineered substrates using standard fluorescence imaging and spectroscopy instrumentation.
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