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HMRhoNox-M, Fe(II)-selective fluorescent probe
| Catalog Number | A14-0139 |
| Category | Calcium, Chloride and Other indicators |
| Molecular Formula | C24H24N2O3 |
| Molecular Weight | 388.47 |
* Please be kindly noted products are not for therapeutic use. We do not sell to patients.
Product Introduction
HMRhoNox-M is a Fe2+-selective fluorescent probe based on the N-oxide-controlled spirocyclization of tetramethyl-hydroxymethyl rhodamine.
Chemical Information
Product Specification
Application
Chemical Information
| Synonyms | LysoRhoNox |
| Appearance | Beige-pinkish Crystals |
Product Specification
| Excitation | 555 |
| Emission | 575 |
Application
HMRhoNox-M, Fe(II)-selective fluorescent probe is a fluorescence-based molecular imaging reagent designed for monitoring labile Fe(II) in chemical biology and materials research contexts. The probe's Fe(II)-responsive fluorescence enables visualization and quantitative readouts in experimental systems where iron redox state matters, supporting workflows such as microscopy-based localization and fluorescence assay development.
1. Cellular Iron Redox Monitoring
HMRhoNox-M, Fe(II)-selective fluorescent probe is used to track labile Fe(II) levels in cell-based studies focused on redox-active iron biology. Researchers employ the probe to generate fluorescence readouts that reflect changes in the Fe(II) pool under controlled experimental conditions, supporting comparative imaging across treatment groups in microscopy workflows and plate-based fluorescence assays. This application is especially relevant for studies where distinguishing Fe(II)-associated signal from background iron species is important for interpreting iron-handling or redox modulation experiments.
2. Fluorescence Microscopy Localization Studies
HMRhoNox-M, Fe(II)-selective fluorescent probe supports spatial mapping of Fe(II)-related fluorescence within cultured cells and other imaging-compatible sample formats. Investigators use the probe to assess where labile Fe(II) signal accumulates, enabling subcellular localization analysis through standard fluorescence microscopy configurations. The probe's turn-on Fe(II)-responsive behavior is leveraged to visualize dynamic iron redox distributions during time-course experiments, helping connect iron availability with observed cellular phenotypes in chemical biology and biomaterials-adjacent studies.
3. Plate-Based Fe(II) Assay Development
HMRhoNox-M, Fe(II)-selective fluorescent probe is frequently incorporated into fluorescence assay development for measuring Fe(II) in buffered solutions and experimental mixtures relevant to iron chemistry. Assay developers use the probe to quantify Fe(II)-dependent fluorescence changes in microplate formats, supporting screening of sample conditions, reagent compatibility studies, and method optimization for iron speciation experiments. This workflow is commonly used in research laboratories that need a practical fluorescence readout to compare Fe(II) levels across multiple conditions while maintaining an Fe(II)-selective sensing approach.
4. Materials and Surface Iron Studies
HMRhoNox-M, Fe(II)-selective fluorescent probe is applied in studies examining iron redox behavior in materials science settings, such as evaluating Fe(II) formation or availability in contact with engineered surfaces or formulated systems. Researchers use the probe to monitor labile Fe(II) signal in the surrounding medium or at interfaces, supporting characterization of iron-related processes in biomaterials and chemical coatings research. The fluorescence-based readout enables relatively straightforward comparison of different material conditions in experiments designed to probe iron speciation and redox-active behavior.
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