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Results for "

neocortical neurons

" in MedChemExpress (MCE) Product Catalog:

6

Inhibitors & Agonists

1

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-W013375
    Thiorphan
    3 Publications Verification

    Neprilysin Neurological Disease
    Thiorphan is a selective neprilysin (NEP) inhibitor with an IC50 of 6.9 nM. Thiorphan competitively binds to NEP and blocks its activity, preventing the degradation of neuropeptides such as substance P (SP) and neurokinin NKA. In the field of neonatal brain injury research, Thiorphan can increase the levels of SP and NKA, activate NK1 and NK2 receptors and downstream transduction pathways, and inhibit excessive activation of NMDA receptors. Thus, Thiorphan can protect neocortical neurons from excitotoxic cell death. Thiorphan may also inhibit NEP from enhancing bronchoconstriction and can be used in the study of respiratory diseases .
    Thiorphan
  • HY-W073501

    trans-2-Pentenedioic acid

    Drug Isomer Endogenous Metabolite Cardiovascular Disease Metabolic Disease
    trans-Glutaconic acid (trans-2-Pentenedioic acid) is the trans isomer of Glutaconic acid (HY-W073501A). trans-Glutaconic acid is a neurotoxic metabolite. trans-Glutaconic acid induces weak neurotoxicity in cultured cerebral neocortical neurons. trans-Glutaconic acid elicits significant electrophysiological responses in rat neocortical wedge preparations at high concentrations. trans-Glutaconic acid can be used in studies related to glutaric acidemia type 1 .
    trans-Glutaconic acid
  • HY-106865

    Dopamine Receptor Adrenergic Receptor Cardiovascular Disease
    Mivazerol is a selective α2-adrenoceptor agonist. Mivazerol decreases the spontaneous release of serotonin (5-HT) and significantly inhibits the immobilization stress-induced enhancement of norepinephrine (NE), dopamine (DA) and dihydroxyphenylacetic acid (DOPAC). Mivazerol inhibits intrathecal release of glutamate evoked by halothane withdrawal in rats, and exerts neuroprotective effects in forebrain ischemia rats. Mivazerol can be used for myocardial ischemia research .
    Mivazerol
  • HY-178963

    Sodium Channel Calcium Channel Neurological Disease
    Nav1.2-IN-2 is a Nav1.2 inhibitor with a human IC50 of 0.18 μM. Nav1.2-IN-2 preferentially binds to the inactivated state of Nav1.2, reduces window current, suppresses neuronal depolarization and action potential generation. Nav1.2-IN-2 suppresses Veratridine (HY-N6691)-induced Ca 2+ influx. Nav1.2-IN-2 can be used for the research of epilepsy .
    Nav1.2-IN-2
  • HY-P2707

    α-DTX

    Sodium Channel Potassium Channel Neurological Disease
    α-Dendrotoxin (α-DTX) is a voltage-gated K + channel blocker and an acid-sensing ion channel (ASIC) inhibitor. α-Dendrotoxin blocks Kv1.1, Kv1.2, Kv1.6 and D-type (ID) voltage-gated K + channels, and reversibly inhibits slowly inactivating potassium currents. α-Dendrotoxin induces epilepsy-related behaviors in mice. α-Dendrotoxin can be used in studies related to tonic-clonic seizures .
    α-Dendrotoxin
  • HY-131885

    GABA Receptor Neurological Disease
    RuBi-Glutamate hexafluorophosphate sodium is a neuronal activator. RuBi-Glutamate hexafluorophosphate sodium photocleaves to release glutamate upon one- or two-photon excitation, activating glutamate receptors in cortical pyramidal neurons. RuBi-Glutamate hexafluorophosphate sodium reduces peak amplitude of evoked GABAergic inhibitory postsynaptic currents in its caged form. RuBi-Glutamate hexafluorophosphate sodium can be used for the research of Huntington's disease .
    RuBi-Glutamate hexafluorophosphate sodium

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