4 Results for "

1246681-32-2

" in MedChemExpress (MCE) Product Catalog:
Products (4)

4 Results for "1246681-32-2" in MCE Product Catalog:

Cat. No.: HY-158736
CAS No.: 1246681-32-2
Synonyms: Psychosine 3′-O-sulfate ammonium; Psychosine 3′-sulfate ammonium
Target:  

Phospholipase

Research Areas:  

Cancer

Lyso-sulfatide (bovine) ammonium, a derivative of the glycosphingolipid sulfatide, acts as an extracellular signal regulating the migration of a neural precursor cell line (B35 neuroblastoma cells) by rapidly promoting process retraction and cell rounding .
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Cat. No.: HY-146920S
CAS No.: 2770684-22-3
Research Areas:  

Others

3-O-Sulfo-galactosyl(β)sphingosine (d18:1)-d7 (ammonium) is deuterium labeled 3-O-Sulfo-galactosyl(β)sphingosine (d18:1) (ammonium).
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Cat. No.: HY-166257
CAS No.: 38621-58-8
Synonyms: Psychosine 3′-O-sulfate; Psychosine 3′-sulfate
Research Areas:  

Metabolic Disease

Lyso-sulfatide (bovine) is a phospholipid component derived from sphingolipid catabolism and a potent factor Xa inhibitor and anticoagulant. Lyso-sulfatide (bovine) binds directly to factor Xa and inhibits prothrombin activation mediated by the prothrombinase complex, thereby prolonging factor Xa-induced plasma clotting time and suppressing thrombin generation. Lyso-sulfatide (bovine) serves as a reliable lipid membrane mimic for studying cell membrane structure, function, and molecular interactions .
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Cat. No.: HY-165180
CAS No.: 70005-46-8
Synonyms: Psychosine 3′-O-sulfate sodium; Psychosine 3′-sulfate sodium
Research Areas:  

Metabolic Disease

Lyso-sulfatide (bovine) sodium is a phospholipid component derived from sphingolipid catabolism and a potent factor Xa inhibitor and anticoagulant. Lyso-sulfatide (bovine) sodium binds directly to factor Xa and inhibits prothrombin activation mediated by the prothrombinase complex, thereby prolonging factor Xa-induced plasma clotting time and suppressing thrombin generation. Lyso-sulfatide (bovine) sodium serves as a reliable lipid membrane mimic for studying cell membrane structure, function, and molecular interactions .
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