63 Results for "

Fe3

" in MedChemExpress (MCE) Product Catalog:
Products (63)

63 Results for "Fe3" in MCE Product Catalog:

Cat. No.: HY-128526
CAS No.: 160472-93-5
Target:  

Endogenous Metabolite

Research Areas:  

Infection

Acinetobactin is a bifunctional siderophore secreted by Acinetobacter baumannii that competitively binds ferric iron ions. Acinetobactin supplies A. baumannii by sequestering host-sequestered Fe 3+, while competitively depriving skin and respiratory commensal bacteria of iron resources, thereby exerting growth-inhibitory effects on Staphylococcus epidermidis, Staphylococcus hominis, Staphylococcus haemolyticus, and Corynebacterium striatum. The synthesis and transport of Acinetobactin enhance the intracellular epithelial colonization ability of A. baumannii, induce apoptosis of host epithelial cells, and simultaneously improve the survival and invasion capabilities of the bacterium in Galleria mellonella and mouse sepsis models. Acinetobactin can be used in A. baumannii-related research [3].
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Cat. No.: HY-184638
APTS Fe2O3 Nanoparticles (Aminated ferric oxide magnetic nanoparticles) are magnetic nanomaterials modified with amino functional groups using APTS. This material consists of a ferric oxide (Fe3O4) nanoparticle core and an amino (-NH2) surface modification layer. The aminated surface helps improve the biocompatibility of the nanoparticles and reduce cytotoxicity. The amino functional groups can be further chemically modified for coupling with biomolecules such as drugs, proteins, and nucleic acids. The amino functional groups undergo protonation at different pH values, resulting in different surface charges on the nanoparticles in different pH environments.
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Cat. No.: HY-184639
Carboxylated magnetic microspheres (low nonspecificity) are functionalized nano- or micron-sized magnetic particles with abundant carboxyl functional groups on their surface. Special chemical treatments reduce the likelihood of nonspecific adsorption. This 1μm carboxylated magnetic microsphere features a core-shell structure: a PS core, an outer layer of iron oxide (Fe3O4), and an outermost encapsulation layer. The carboxyl groups are obtained through polymer modification. Exhibiting low nonspecific adsorption, these microspheres can covalently couple with bioligands such as peptides, proteins, antibodies, and oligonucleotides using specific chemical reagents (e.g., EDC), making them particularly suitable for cell sorting, affinity chromatography, and immunoassay.
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