3 Results for "

tumor hypoxia imaging

" in MedChemExpress (MCE) Product Catalog:
Products (3)

3 Results for "tumor hypoxia imaging" in MCE Product Catalog:

Cat. No.: HY-170779
CAS No.: 3078291-78-5
Target:  

FAP

Research Areas:  

Cancer

DOTA-NI-FAPI-04 is a FAP inhibitor (IC50 = 7.44 nM). By integrating FAP targeting with hypoxia-sensitive groups (nitroimidazole), DOTA-NI-FAPI-04 significantly enhances tumor uptake and retention capabilities. DOTA-NI-FAPI-04 chelates metallic isotopes (such as 68Ga and 177Lu) through DOTA to produce radioactive probes ([68Ga]Ga/DOTA-NI-FAPI-04 and [177Lu]Lu/DOTA-NI-FAPI-04), which can be used for research in tumor diagnostics and therapeutic agents. DOTA-NI-FAPI-04 holds dual targeting potential in the fields of cancer imaging, tumor microenvironment analysis, and radionuclide therapy, particularly suitable for scenarios where the tumor stroma and hypoxic regions synergistically interact .
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Cat. No.: HY-D3075
CAS No.: 2490504-23-7
Target:  

Fluorescent Dye

Research Areas:  

Others

TPE-2E N-oxide is a fluorescent probe used for hypoxia detection and tumor hypoxia imaging. Due to its active intramolecular motion, TPE-2E N-oxide shows no fluorescence in aqueous solution. In hypoxic environments, its N-oxide group undergoes two-electron reduction by CYP450 reductase and other heme protein reductases expressed under hypoxia, forming hydrophobic aggregates that trigger aggregation-induced emission through the restriction of intramolecular motion. TPE-2E N-oxide exhibits selective lipid droplet localization in cells. The absorption wavelength of TPE-2E N-oxide in dichloromethane is 313 nm; in a 99% hexane/dichloromethane mixed system, its excitation wavelength is 330 nm and emission wavelength is 460 nm. For in vitro cell imaging, excitation is performed at 405 nm, with an emission wavelength range of 430-560 nm .
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Cat. No.: HY-185401
CAS No.: 63618-91-7
Target:  

MOFs

Research Areas:  

Cancer

ATSM is a ligand that forms complexes with Cu 2+, Ni 2+, Zn 2+, and Fe 2+, with the highest affinity for Cu 2+. ATSM forms Cu-ATSM with copper, which is used for PET imaging to detect tumor hypoxia. ATSM is commonly used in coordination chemistry and radiopharmaceutical research .
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