Date published: 2025-9-10

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Lipocalin-9 Inhibitors

Lipocalin-9 inhibitors are a class of chemical compounds that specifically target and inhibit the activity of Lipocalin-9, a member of the lipocalin protein family. Lipocalins are small extracellular proteins known for their ability to bind and transport small hydrophobic molecules such as lipids and other signaling molecules. Lipocalin-9, in particular, is involved in immune system regulation and inflammatory responses, as it can interact with various receptors and participate in modulating cellular functions. The inhibitors of Lipocalin-9 are designed to modulate its biological activity by preventing its interactions with ligands or receptors, thereby altering the pathways that it influences.

These inhibitors typically function by binding to the active sites or key structural domains of Lipocalin-9, effectively blocking its biological role. This inhibition can be achieved through different mechanisms, such as competitive inhibition, where the inhibitor competes with natural ligands for the binding site, or allosteric inhibition, which involves the binding of the inhibitor to a different site on the protein that induces conformational changes, reducing its activity. Lipocalin-9 inhibitors can vary in their structural complexity, from small molecule inhibitors to more elaborate macromolecules such as peptides or antibodies. The structural diversity of these inhibitors is reflective of the different strategies used to disrupt the functional role of Lipocalin-9 in various biological processes.

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Items 11 to 12 of 12 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Palmitoylethanolamide

544-31-0sc-202754
sc-202754A
sc-202754B
sc-202754C
sc-202754D
10 mg
50 mg
500 mg
1 g
10 g
$78.00
$238.00
$2050.00
$3274.00
$16330.00
(1)

Activates PPARα, influences lipid signaling pathways, can affect the activity of Lipocalin-9.

Oleic Acid

112-80-1sc-200797C
sc-200797
sc-200797A
sc-200797B
1 g
10 g
100 g
250 g
$36.00
$102.00
$569.00
$1173.00
10
(1)

Involved in lipid signaling, can alter the transport and regulatory functions of Lipocalin-9.