3 Results for "

oncological disorders

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

3 Results for "oncological disorders" in MCE Product Catalog:

Cat. No.: HY-W109401
CAS No.: 1431411-18-5
SIRT-IN-6 (Compound 14) is a pan-inhibitor of SIRT1/2/3 with IC50 values of >50 μM. SIRT-IN-6 is promising for research of metabolic, inflammatory, oncologic and neurodegenerative disorders .
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Cat. No.: HY-151094
Target:  

Monoamine Oxidase

Research Areas:  

Neurological Disease

FTEAA is a 4-styrylpiperidine inhibitor. FTEAA exhibits potent inhibitory effect towards both monoamine oxidase with IC50s of 0.52 μM (MAO-A), 1.02 μM (MAO-B), respectively. MAO inhibitors can be used for cardiovascular, neurological and oncological disorders research .
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Cat. No.: HY-L009M
271 compounds

Kinases is a class of enzymes that adds chemicals called phosphates to other molecules, such as sugars or proteins. Protein phosphorylation serves as a critical regulatory mechanism for numerous cellular processes including cell division, metabolism, and signal transduction, with approximately 50% of cellular functions in humans being regulated by kinase activity. In drug discovery, kinases represent a major category of therapeutic targets, and kinase inhibitors constitute an important class of pharmaceuticals that block the activity of specific disease-associated enzymes, particularly in cancer and inflammatory disorders. Small molecule kinase inhibitors represent one of the fastest-growing drug categories, having received U.S. Food and Drug Administration (FDA) approval for both oncological and non-oncological indications. As of September 2023, over 70 FDA-approved small molecule kinase inhibitors are commercially available.

The MCE Kinase Inhibitor Library Mini contains 271 kinase inhibitors primarily targeting protein kinases (VEGFR, EGFR, BTK, CDK, Akt, etc.), lipid kinases (PI3K, PI4K, SK, etc.), and carbohydrate kinases. This collection includes 1-3 highly specific representative compounds per target, optimized for screening of kinase-related drug targets in pharmaceutical research.