6 Results for "

NIR-II fluorescence imaging

" in MedChemExpress (MCE) Product Catalog:
Products (6)

6 Results for "NIR-II fluorescence imaging" in MCE Product Catalog:

Cat. No.: HY-W588722
CAS No.: 3024705-52-7
ICG-DBCO is a near-infrared fluorescent click chemistry reagent (Ex/Em = 789/813 nm), composed of Indocyanine green (ICG) (HY-D0711) and dibenzocyclooctyne (DBCO). ICG-DBCO enables copper-free, strain-promoted azide-alkyne cycloaddition (SPAAC) for labeling biomolecules such as antibodies, proteins and peptides, thereby facilitating deep tissue optical imaging .
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Cat. No.: HY-D1450
CAS No.: 155613-98-2
Synonyms: S01448
Target:  

Fluorescent Dye

Research Areas:  

Cancer

IR-1048 is a nitroreductase (NTR)-responsive near-infrared fluorescence (NIR)/photoacoustic (PA) imaging probe and photothermal agent. IR-1048 is coupled with a nitroimidazole group to form IR-1048-MZ. IR-1048-MZ is catalytically reduced by NTR in a hypoxic environment, restoring strong near-infrared absorption and fluorescence emission (NIR II window), while activating the photothermal effect. IR-1048 relies on NTR-mediated electron transfer to relieve intramolecular fluorescence quenching, achieving specific imaging and photothermal ablation of tumor hypoxic areas. IR-1048 is mainly used for high-contrast NIR II/photoacoustic imaging and photothermal therapy research and tumor diagnosis of the tumor hypoxic microenvironment .
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Cat. No.: HY-113553
CAS No.: 102185-28-4
Synonyms: (p-Aminophenyl)phosphocholine; p-Aminophenylphosphorylcholine; 4-APPC
Research Areas:  

Others

4-Aminophenylphosphorylcholine ((p-Aminophenyl) phosphocholine; p-Aminophenylphosphorylcholine; 4-APPC) is a phosphatidylcholine derivative that serves as a coupling ligand and antigen probe. When conjugated with gold nanoclusters, the phosphocholine head epitope of 4-Aminophenylphosphorylcholine is specifically recognized by anti-Pc IgM and CRP. It can be covalently coupled to human serum albumin (HSA) or glutathione-protected gold nanoclusters (Au-GSH) via covalent chemistry, respectively. The 4-Aminophenylphosphorylcholine-HSA complex acts as an ELISA coating antigen for detecting endogenous anti-Pc IgM antibodies in plasma; 4-Aminophenylphosphorylcholine-modified Au-GSH can be used to construct an ultra-stealthy NIR-II fluorescent gold nanocluster probe for imaging-related studies in mouse breast cancer and colon cancer models .
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Cat. No.: HY-149765
CAS No.: 2481214-36-0
Target:  

Fluorescent Dye

Research Areas:  

Others

Bone-1064 is a EuK-based PSMA tetramer bone probe for high-contrast visualization of bone in surrounding tissue. Bone-1064 specifically binds hydroxyapatite in bone tissue and can be used for NIR-II fluorescence imaging in animal models .
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Cat. No.: HY-D3136
Target:  

Fluorescent Dye

Research Areas:  

Cancer

MC-PSE is a fluorescent probe that can be used for glutathione (GSH) detection, NIR-II fluorescence imaging and ratiometric photoacoustic imaging. MC-PSE spontaneously forms J-aggregates in aqueous solution through π-π stacking, and its phenylselenyl group acts as a fluorescence quencher and GSH recognition receptor, thereby eliminating intrinsic fluorescence and generating a maximum absorption peak at 1000 nm. The excitation/emission wavelengths of MC-PSE are Ex = 808 nm and Em = 940 nm. MC-PSE can be applied in tumor-related research .
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Cat. No.: HY-D3080
Target:  

Fluorescent Dye

Research Areas:  

Others

CR-1 is a ratiometric photoacoustic (PA) probe for in-situ real-time imaging of Zn 2+ in deep living tissues. CR-1 is formed by coupling the near-infrared cyanine dye IR825 with the Zn 2+ ligand tris (2-pyridylmethyl) amine (TMPA). Upon binding to Zn 2+, the five N atoms on TMPA coordinate with Zn 2+, leading to double bond rearrangement of IR825 and attenuation of its π-electron conjugated system. The absorption peak of CR-1 blue-shifts from 710 nm to 532 nm, enabling quantitative detection of Zn 2+ via the PA532/PA710 ratio. Free CR-1 generates a strong PA signal at 710 nm, while CR-1 bound to Zn 2+ produces a strong PA signal at 532 nm .
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