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Behavioral pharmacology

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-103111

    mGluR Neurological Disease
    MMPIP hydrochloride is an allosteric metabotropic glutamate receptor 7 (mGluR7) selective antagonist (KB values 24 -30 nM). MMPIP hydrochloride acts as a pharmacological tool for elucidating the roles of mGluR7 on central nervous system functions. MMPIP hydrochloride alleviates pain and normalizes affective and cognitive behavior in neuropathic mice .
    MMPIP hydrochloride
  • HY-B0978

    DEET; N,N-Diethyl-m-toluamide

    Parasite Infection Neurological Disease
    Diethyltoluamide (DEET) is the most common active ingredient in insect repellents. It is intended to provide protection against mosquitoes, ticks, fleas, chiggers, leeches, and many other biting insects. Diethyltoluamide is toxic to hepatocytes and can lead to many physiological, pharmacological, and behavioral abnormalities, particularly motor deficits and learning and memory dysfunction .
    Diethyltoluamide
  • HY-103413

    Dopamine Receptor Neurological Disease
    Eticlopride hydrochloride, a selective dopamine D2‐like receptor antagonist, exhibits high affinity for dopamine D2, α1‐adrenergic, α2‐adrenergic, 5HT1, 5HT2 receptors with Kis of 0.09, 112, 699, 6220, and 830 nM, respectively. Antipsychotic agent .
    Eticlopride hydrochloride
  • HY-101102

    Others Neurological Disease
    7-Hydroxy-DPAT hydrobromide is a selective D3 dopamine receptor agonist, exhibiting significant pharmacological activity in modulating locomotor behavior and dopamine metabolism within the brain.
    7-Hydroxy-DPAT hydrobromide
  • HY-117637

    Others Neurological Disease
    ALS-I-41 is a novel, potent and selective oxytocin receptor antagonist with the potential to modulate biological activities related to social behavior and mental disorders. ALS-I-41 is being evaluated for behavioral pharmacology experiments in non-human primates and can be administered via intranasal or intramuscular injection. The central nervous system penetration and metabolic rate of ALS-I-41 were studied by mass spectrometry analysis in cerebrospinal fluid and plasma of macaque monkeys .
    ALS-I-41
  • HY-107503

    mGluR Neurological Disease
    MMPIP is an allosteric metabotropic glutamate receptor 7 (mGluR7) selective antagonist (KB values 24 -30 nM). MMPIP acts as a pharmacological tool for elucidating the roles of mGluR7 on central nervous system functions. MMPIP alleviates pain and normalizes affective and cognitive behavior in neuropathic mice .
    MMPIP
  • HY-17032

    (rac)-AS1069562 free base; YM-08054 free base

    Others Neurological Disease
    Indeloxazine ((rac)-AS1069562 free base) is a brain active compound with anti-amnesic activity. Indeloxazine significantly prolonged the step latency in senescence accelerated mice (SAM-P/8/Ta), indicating that it has a promoting effect on brain function. Indeloxazine has a broader pharmacology than piracetam and exhibits stronger anti-amnesic activity. Indeloxazine has also been used as an anticonvulsant compound, further supporting its potential use in neuroprotection and behavioral improvement .
    Indeloxazine
  • HY-146201

    Phosphodiesterase (PDE) Others
    1 a /5-hydroxynitrile rubber 7 receptor antagonist (5-HT1 a k i = 8 nm, kb= 0.04 nm; 5-nitrile rubber 7K I = 451 nm, kb= 460 nm) has pde4b/pde7a inhibitory activity (PDE4B ic50= 80.4 μ M; Pde7a chip 50= 151.3 μ M)。 Compound 22 has a very good ability of passive penetration of biofilm and high metabolic stability in vitro. In addition, 22's pharmacological evaluation showed its pre cognitive and antidepressant properties in rat behavioral tests.
    PDE4B/7A-IN-1
  • HY-136805

    Others Neurological Disease
    Kv1.5-IN-1 is a Kv1.5 channel inhibitor. Its target selectivity and pharmacodynamic effects were evaluated in an in vitro rat model. After the introduction of a methoxy group at the R5 position, Kv1.5-IN-1 showed inhibitory potency similar to that of the unsubstituted compound. Its IC50 value for hKv1.5 channels was 0.51 μM. Kv1.5-IN-1 exhibited a high degree of selectivity, nearly 2,600 times higher than compound Ik and 300 times higher than compound IId, indicating that it may be a safe inhibitor. Due to its good pharmacological behavior, Kv1.5-IN-1 deserves further pharmacodynamic and pharmacokinetic evaluation. These properties make Kv1.5-IN-1 a potential Kv1.5 channel inhibitor that may have application prospects in the treatment of related diseases.
    Kv1.5-IN-1

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