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Results for "

peripheral anionic site

" in MedChemExpress (MCE) Product Catalog:
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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-149484

    Cholinesterase (ChE) Neurological Disease
    AChE/BChE-IN-15 (Compound 6d) is an AChE/BChE inhibitor, with IC50s of 20 nM and 220 nM respectively. AChE/BChE-IN-15 binds to both catalytic anionic site (CAS) and peripheral anionic site (PAS) in the active sites of AChE and BChE. AChE/BChE-IN-15 can be used for research of Alzheimer’s disease .
    AChE/BChE-IN-15
  • HY-157527

    Cholinesterase (ChE) Beta-secretase Neurological Disease
    hAChE-IN-7 (compound 5s) is a mixed inhibitor affecting both the catalytic active site (CAS) and peripheral anionic site (PAS) of hAChE. hAChE-IN-7 displays the balanced inhibitory effect on hAChE (IC50=69.8 nM) and hBuChE (IC50=68.0 nM), and exhibits inhibitory activity against β-secretase-1 (BACE-1) (IC50=3.6 μM). hAChE-IN-7 has the potential for Alzheimer's disease (AD) research .
    hAChE-IN-7
  • HY-151885

    Cholinesterase (ChE) Monoamine Oxidase Neurological Disease
    Dual AChE-MAO B-IN-3 (compound C10) is a potent dual AChE/MAO-B inhibitior, with IC50 values of 0.58 and 0.41 μM, respectively. Dual AChE-MAO B-IN-3 is a dual-binding inhibitor bound to both the catalytic anionic site and peripheral anionic site of AChE. Dual AChE-MAO B-IN-3 can be used for Alzheimer’s disease (AD) research .
    Dual AChE-MAO B-IN-3
  • HY-150728

    Cholinesterase (ChE) Neurological Disease
    AChE-IN-22 (compound 10q) is a selective acetylcholinesterase (AChE) inhibitor against AChE and BuChE with the IC50 values of 0.88 μM and 10 μM, respectively. AChE-IN-22 can bind to both the CAS (catalytic active site) and PAS (peripheral anionic site) of AChE and has the potential for the research of Alzheimer's disease .
    AChE-IN-22
  • HY-163746

    Cholinesterase (ChE) Neurological Disease
    BuChE-IN-11 (Compound 3b-1) is an selective BuChE inhibitor with an IC50 of 0.44 μM for hBuChE. BuChE-IN-11 has high blood-brain barrier permeability and exhibits strong antioxidant activity due to its free radical scavenging properties. BuChE-IN-11 interacts with the choline binding site, acetyl binding site, and peripheral anionic site, exhibiting submicromolar BuChE inhibitory activity and preventing β-amyloid (Aβ) self-aggregation. BuChE-IN-11 holds promise for research in the field of Alzheimer's disease .
    BuChE-IN-11

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