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Results for "

NR2A

" in MedChemExpress (MCE) Product Catalog:

10

Inhibitors & Agonists

4

Peptides

1

Natural
Products

1

Recombinant Proteins

1

Antibodies

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-12881

    SL-820715

    iGluR Neurological Disease
    Eliprodil(SL-820715) is a non-competitive NR2B-NMDA receptor antagonist(IC50=1 uM), less potent for NR2A- and NR2C-containing receptors(IC50> 100 uM).
    Eliprodil
  • HY-15703
    QNZ46
    1 Publications Verification

    iGluR Neurological Disease
    QNZ46 is a NR2C/NR2D-selective NMDA receptor non-competitive antagonist (IC50 values are 3, 6, 229, and >300, >300 μM for NR2D, NR2C, NR2A, NR2B, and GluR1, respectively).
    QNZ46
  • HY-12962

    iGluR Neurological Disease
    NMDA-IN-1 is a potent and NR2B-selective NMDA antagonist with Ki of 0.85 nM; NR2B Ca2+ influx IC50 is 9.7 nM; no activities on NR2A, NR2C, NR2D, hERG-channel and α1-adrenergic receptor.
    NMDA-IN-1
  • HY-107698

    iGluR Neurological Disease
    PMPA (NMDA antagonist) is an NMDA receptor antagonist with Ki values of 0.84, 2.74, 3.53 and 4.16 μM for NR2A, NR2B, NR2C and NR2D, respectively .
    PMPA (NMDA antagonist)
  • HY-107699

    iGluR Neurological Disease
    PPPA is a competitive NMDA receptor antagonist that displays moderate selectivity for NR2A-containing receptors [2].
    PPPA
  • HY-12882A
    Ifenprodil tartrate
    3 Publications Verification

    iGluR Potassium Channel Neurological Disease
    Ifenprodil tartrate is a typical noncompetitive NMDA receptor antagonist. Ifenprodil tartrate exerts high affinity at NR1A/NR2B receptors (IC50=0.34 μM) over 400-fold than at NR1A/NR2A receptors (IC50=146 μM) . Ifenprodil tartrate inhibits GIRK (Kir3), reduces inward currents through the basal GIRK activity. Ifenprodil tartrate has the potential to be a cerebral vasodilator [2].
    Ifenprodil tartrate
  • HY-P2307A

    iGluR NO Synthase Neurological Disease
    Tat-NR2BAA TFA is the control peptide of Tat-NR2B9c (HY-P0117), inactive. The sequence of Tat-NR2BAA TFA is similar to Tat-NR2B9c, but it has a double-point mutation in the COOH terminal tSXV motif, making it incapable of binding PSD-95. Tat-NR2B9c is a membrane-permeant peptide and disrupts PSD-95/NMDAR binding, correlate with uncoupling NR2B- and/or NR2A-type NMDARs from PSD-95 .
    Tat-NR<em>2</em>Baa TFA
  • HY-P2307

    iGluR NO Synthase Neurological Disease
    Tat-NR2BAA is the control peptide of Tat-NR2B9c (HY-P0117), inactive. The sequence of Tat-NR2BAA is similar to Tat-NR2B9c, but it has a double-point mutation in the COOH terminal tSXV motif, making it incapable of binding PSD-95. Tat-NR2B9c is a membrane-permeant peptide and disrupts PSD-95/NMDAR binding, correlate with uncoupling NR2B- and/or NR2A-type NMDARs from PSD-95 [2].
    Tat-NR<em>2</em>Baa
  • HY-P0117A
    Tat-NR2B9c TFA
    Maximum Cited Publications
    7 Publications Verification

    Tat-NR2Bct TFA; NA-1 TFA

    iGluR NO Synthase Neurological Disease
    Tat-NR2B9c TFA (Tat-NR2Bct TFA) is a postsynaptic density-95 (PSD-95) inhibitor, with EC50 values of 6.7 nM and 670 nM for PSD-95d2 (PSD-95 PDZ domain 2) and PSD-95d1, respectively. Tat-NR2B9c TFA disrupts the PSD-95/NMDAR interaction, inhibiting NR2A and NR2B binding to PSD-95 with IC50 values of 0.5 μM and 8 μM, respectively. Tat-NR2B9c TFA also inhibits neuronal nitric oxide synthase (nNOS)/PSD-95 interaction, and possesses neuroprotective efficacy .
    Tat-NR<em>2</em>B9c TFA
  • HY-P0117
    Tat-NR2B9c
    Maximum Cited Publications
    7 Publications Verification

    Tat-NR2Bct; NA-1

    iGluR NO Synthase Neurological Disease
    Tat-NR2B9c (Tat-NR2Bct; NA-1) is a postsynaptic density-95 (PSD-95) inhibitor, with EC50 values of 6.7 nM and 670 nM for PSD-95d2 (PSD-95 PDZ domain 2) and PSD-95d1, respectively. Tat-NR2B9c disrupts the PSD-95/NMDAR interaction, inhibiting NR2A and NR2B binding to PSD-95 with IC50 values of 0.5 μM and 8 μM, respectively. Tat-NR2B9c also inhibits neuronal nitric oxide synthase (nNOS)/PSD-95 interaction, and possesses neuroprotective efficacy [2] .
    Tat-NR<em>2</em>B9c

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