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seizure mouse model

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8

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-15079
    Talampanel
    1 Publications Verification

    GYKI-53773; LY-300164

    iGluR Apoptosis Neurological Disease Cancer
    Talampanel (LY300164) is an orally and selective α-amino-3-hydroxy-5-methyl-4-isoxazolepropionate (AMPA) receptor antagonis with anti-seizure activity . Talampanel (IVAX) has neuroprotective effects in rodent stroke models . Talampanel attenuates caspase-3 dependent apoptosis in mouse brain .
    Talampanel
  • HY-168773

    EAAT Neurological Disease
    (R)-AS-1 is a selective positive allosteric modulator of the excitatory amino acid transporter 2 (EAAT2), with an EC50 of 11 nM. (R)-AS-1 (at doses of 60 and 90 mg/kg) increases spontaneous locomotor activity in mice. Additionally, it demonstrates anticonvulsant activity in mouse models of seizures induced by maximal electroshock (MES), pentylenetetrazole (PTZ), or electrical stimuli (32 or 44 mA), with ED50s of 66.3, 36.3, 15.6, and 41.6 mg/kg, respectively. (R)-AS-1 can be used in neurological disease research .
    (R)-AS-1
  • HY-B1606

    Chlorthymol; 6-Chlorothymol

    Environmental Pollutants Bacterial AP-1 GABA Receptor Infection Neurological Disease
    Chlothymol is a potent positive modulator of the GABAA receptor subunit LGC-37, anticonvulsant, and antibacterial agent. Chlothymol inhibits Pentylenetetrazol-induced c-fos expression. Chlothymol inhibits the growth of Methicillin (HY-121544)-resistant Staphylococcus aureus (MRSA) strains, including LAC, with an MIC of 32 μg/mL. Chlorothymol has protective effects against epileptic seizures in various mouse models .
    Chlorothymol
  • HY-118696

    GABA Receptor Neurological Disease
    MGAT2-IN-5 (Compound 17b) is a selective inhibitor for mouse GABA transit protection subsidity 2 (mGAT2) with an IC50 of 45 μM. MGAT2-IN-5 exhibits anticonvulsive efficacy in audiogenic seizure (AGS) susceptible frings mouse model with an ED50 of 20.4 mg/kg .
    MGAT2-IN-5
  • HY-N18014

    Drug Derivative Neurological Disease
    Naringenin 4',7-dimethyl ether, Naringenin (HY-N0100) derivative is an anti-seizure agent. Naringenin 4',7-dimethyl ether attenuates pentylenetetrazole-induced seizures in larval zebrafish and reduces seizures in the mouse 6-Hz psychomotor seizure model. Naringenin 4',7-dimethyl ether can be used for the research of epilepsy .
    Naringenin 4',7-dimethyl ether
  • HY-179142

    COX TNF Receptor Interleukin Related Neurological Disease Inflammation/Immunology
    COX-2-IN-60 is a potent, orally active, and selective COX-2 inhibitor with an IC50 of 0.06 μM. COX-2-IN-60 exhibits ~100-fold selectivity over COX-1 (IC50 = 5.93 ). COX-2-IN-60 reduces oxidative stress and neuroinflammatory cytokines, and effectively counteracts epileptogenesis. COX-2-IN-60 exhibits significant anticonvulsant effects and protects against hippocampal injury by suppressing oxidative stress (reducing MDA and NO), pro-inflammatory signaling (reducing TNF-α and IL-6), and glial activationin in the Pilocarpine (HY-B0726A)-induced seizure mouse model. COX-2-IN-60 can be used for the research on neuroinflammatory and epilepsy .
    COX-2-IN-60
  • HY-180056

    Carbonic Anhydrase NKCC mTOR Neurological Disease
    CAII-IN-12 (compound 6c) is a potent and selective carbonic anhydrase (CA) II and VII inhibitor (hCA II Ki = 47.8 nM, hCA VII Ki = 3.6 nM) with anti-epilepitic activity. CAII-IN-12 displays selectivity over hCA I (Ki = 370 nM). CAII-IN-12 exhibits potent anticonvulsant activity in both Pentylenetetrazol- and Pilocarpine (HY-B0726A)-induced seizure mouse models. CAII-IN-12 increases expression of KCC2 in the hippocampus, maintains neuronal integrity, and reduces mTOR activity. CAII-IN-12 can be used for epilepsy research .
    CAII-IN-12
  • HY-182023

    Reactive Oxygen Species (ROS) GABA Receptor Neurological Disease
    Anticonvulsant agent 11 (Compound 8b) is an anticonvulsant agent. Anticonvulsant agent 11 exerts neuroprotective effects by enhancing cell viability and reducing ROS levels. Anticonvulsant agent 11 induces the expression of GABAA α1, resulting in neuronal hyperpolarization. Anticonvulsant agent 11 increases the number of neurite-bearing cells and the length of neurites. Anticonvulsant agent 11 exhibits dose-dependent anticonvulsant effects in mice. Anticonvulsant agent 11 can be used for the research of epilepsy .
    Anticonvulsant agent 11

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