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Results for "

bms 8

" in TargetMol Product Catalog
  • Inhibitors & Agonists
    8
    TargetMol | Inhibitors_Agonists
  • PROTAC Products
    1
    TargetMol | PROTAC
  • Isotope Products
    1
    TargetMol | Isotope_Products
BMS-8
T268591675201-90-7
BMS-8 is a novel inhibitor of the PD-1 PD-L1 interaction (IC50: 7.2 μM) by binding directly to PD-L1 and inducing the formation of PD-L1 homodimers.
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BMS-202
PD1-PDL1 inhibitor 2, PD-1 PD-L1 inhibitor 2
T31461675203-84-5
BMS-202 (PD1-PDL1 inhibitor 2) is an inhibitor of the PD-1 (Programmed death- 1) PD-Ll (Programmed death-ligand 1) protein protein interaction.
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TargetMol | Inhibitor Hot
BMS-561392 Formic acid
BMS-561392 Formic acid(611227-74-8 Free base)
T30531L In house
BMS-561392 Formic acid is a selective inhibitor of TACE and reduces TNFalpha levels.
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BMS-5
LIMKi 3, BMS5
T45981338247-35-0
BMS-5 (LIMKi 3) is a highly potent LIMK inhibitor, exhibiting IC50 values of 7 nM for LIMK1 and 8 nM for LIMK2.
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Dasatinib-d8
BMS-354825 D8
T109621132093-70-9
Dasatinib D8 is deuterium-labeled dasatinib. Dasatinib is a dual Bcr-Abl and Src family tyrosine kinase inhibitor.
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7-10 days
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Lomitapide Mesylate
BMS-201038 mesylate, AEGR-733 mesylate
T2545202914-84-9
Lomitapide Mesylate (BMS-201038 mesylate) is a methanesulfonic acid form of lomitapide, a small molecule inhibitor of microsomal triglyceride transfer protein.
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7-10 days
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BMS 599626 2HCl (873837-23-1(HCl))
AC480 dihydrochloride
T53981781932-33-9
BMS 599626 2HCl (873837-23-1(HCl)) (AC480 dihydrochloride) is a selective inhibitor of HER1 and HER2 (IC50s: 20 nM and 30 nM), ~8-fold less potent to HER4, >100-fold to Lck, VEGFR2, c-Kit, MET, etc.
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N-Fmoc-8-aminooctanoic acid
T71972126631-93-4
N-Fmoc-8-aminooctanoic acid can be used as a PROTAC linker in the synthesis of PROTACs. N-Fmoc-8-aminooctanoic acid is an alkane chian with terminal Fmoc-protected amine and carboxylic acid groups. The Fmoc group can be deprotected under basic condition to obtain the free amine which can be used for further conjugations. The terminal carboxylic acid can react with primary amine groups in the presence of activators (e.g. EDC, or HATU) to form a stable amide bond.
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6-8 weeks
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