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Results for "

neuron transmission

" in MedChemExpress (MCE) Product Catalog:

13

Inhibitors & Agonists

1

Biochemical Assay Reagents

2

Peptides

1

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-126112

    Others Neurological Disease
    Mephenoxalone is a muscle relaxant with anti-anxiety activity. Mephenoxalone has neuropharmacologic activity in vivo. Mephenoxalone inhibits neuron transmission and can relax skeletal muscles by inhibiting the reflex arc .
    Mephenoxalone
  • HY-113316A

    Endogenous Metabolite Opioid Receptor Neurological Disease
    (±)-Salsolinol hydrochloride is the hydrochloride form of (±)-Salsolinol (HY-113316). (±)-Salsolinol hydrochloride is a Dopamine (HY-B0451)-derived endogenous metabolite. (±)-Salsolinol hydrochloride activates μ-opioid receptors (MORs), reduces GABAergic transmission, increases the excitability of dopamine (DA) neurons, and thus accelerates the sustained firing of neurons in the posterior ventral tegmental area (pVTA) .
    (±)-Salsolinol hydrochloride
  • HY-B0815
    Chlorpyrifos
    2 Publications Verification

    Cholinesterase (ChE) Neurological Disease
    Chlorpyrifos is a neurotoxic insecticide that belongs to the class of thionite esters. Chlorpyrifos is also a AChE inhibitor that affects neurological function in insects, humans and other animals. Chlorpyrifos interferes with cell replication and differentiation, ultimately altering synaptic transmission in neurons .
    Chlorpyrifos
  • HY-W110888

    GLUT Neurological Disease
    Brilliant Yellow, a diazo-containing sulfonic aci, is also a potent VGLUT-specific inhibitor. Brilliant Yellow is membrane-impermeable. However, there are some Brilliant Yellow analogs with low cytotoxicity and cell penetration. Brilliant Yellow analogs work on glutamatergic transmission in hippocampal neurons .
    Brilliant Yellow
  • HY-P10234A

    Sodium Channel Neurological Disease
    Poneratoxin acetate is the acetate salt form of Poneratoxin (HY-P10234). Poneratoxin acetate is the modulator for voltage-gated sodium channel (NaV, EC50 for NaV1.6 and NaV1.7 is 97 nM and 2.3 µM), that lowers the voltage threshold for activation and inhibits the inactivation of channels, enhances the excitability of neurons, and leads to the transmission of pain signals .
    Poneratoxin acetate
  • HY-126112R

    Biochemical Assay Reagents Reference Standards Neurological Disease
    Mephenoxalone (Standard) is the analytical standard of Mephenoxalone. This product is intended for research and analytical applications. Mephenoxalone is a muscle relaxant with anti-anxiety activity. Mephenoxalone has neuropharmacologic activity in vivo. Mephenoxalone inhibits neuron transmission and can relax skeletal muscles by inhibiting the reflex arc .
    Mephenoxalone (Standard)
  • HY-W013353

    Endogenous Metabolite Opioid Receptor Neurological Disease
    (RS)-Salsolinol hydrobromide is the hydrobromide form of (±)-Salsolinol (HY-113316). (RS)-Salsolinol hydrobromide is a Dopamine (HY-B0451)-derived endogenous metabolite. (RS)-Salsolinol hydrobromide activates μ-opioid receptors (MORs), reduces GABAergic transmission, increases the excitability of dopamine (DA) neurons, and thus accelerates the sustained firing of neurons in the posterior ventral tegmental area (pVTA) .
    (RS)-Salsolinol hydrobromide
  • HY-P10234

    Sodium Channel Neurological Disease
    Poneratoxin is the modulator for voltage-gated sodium channel (NaV, EC50 for NaV1.6 and NaV1.7 is 97 nM and 2.3 µM), that lowers the voltage threshold for activation and inhibits the inactivation of channels, enhances the excitability of neurons, and leads to the transmission of pain signals .
    Poneratoxin
  • HY-169871

    iGluR Neurological Disease
    Argiotoxin 636 is a toxin and the non-specific, non-competitive, and potent ionotropic glutamate receptor (iGluR) antagonist. Argiotoxin 636 blocks excitatory synaptic transmission in neurons and has paralysis and muscle relaxation effects. Argiotoxin 636 can be used in the study of nervous system diseases .
    Argiotoxin 636
  • HY-B0815R

    Reference Standards Cholinesterase (ChE) Neurological Disease
    Chlorpyrifos (Standard) is the analytical standard of Chlorpyrifos. This product is intended for research and analytical applications. Chlorpyrifos is a neurotoxic insecticide that belongs to the class of thionite esters. Chlorpyrifos is also a AChE inhibitor that affects neurological function in insects, humans and other animals. Chlorpyrifos interferes with cell replication and differentiation, ultimately altering synaptic transmission in neurons .
    Chlorpyrifos (Standard)
  • HY-174899

    iGluR Neurological Disease
    AMPA-IN-2 is an orally active AMPA inhibitor that can cross the blood-brain barrier. AMPA-IN-2 improves epileptic seizures by inhibiting the intrinsic excitability of neurons and inhibiting the excitability of glutamatergic transmission. AMPA-IN-2 exerts anti-epileptic effects in the pentylenetetrazol (PTZ) model and can be used as a promising candidates with high broad-spectrum anti-epileptic potential .
    AMPA-IN-2
  • HY-21197

    Perfluoroheptanoic acid; Tridecafluoroheptanoic acid; PFHpA

    iGluR Neurological Disease
    Perfluoroenanthic acid (Perfluoroheptanoic acid) is a type of perfluoroalkyl substance (PFAS) that can negatively impact the development of seminiferous tubules and m6A RNA methylation in the testes of offspring mice when exposed during pregnancy, consequently disrupting spermatogenesis and leading to reproductive toxicity. Perfluoroenanthic acid alters the morphology of dendritic spines and synaptic formation in primary cortical neuron cultures, enhancing neuronal activity and synaptic transmission, and increasing the expression of excitatory synapse-related proteins Synaptophysin and PSD95 .
    Perfluoroenanthic acid
  • HY-16728A

    GLYX-13 acetate

    iGluR Neurological Disease
    Rapastinel acetate (GLYX-13 acetate) is an N-methyl-D-aspartate (NMDA) receptor modulator with long-acting antidepressant activity. Rapastinel acetate exerts its antidepressant effects by enhancing long-term potentiation (LTP) of synaptic transmission. Rapastinel acetate transiently enhances NMDAR-mediated currents in pyramidal neurons in the hippocampus and medial prefrontal cortex by binding to unique sites on the NMDAR complex. Rapastinel acetate significantly enhanced NMDAR-mediated currents at a concentration of 1 μmol/l and significantly reduced the currents at a concentration of 10 μmol/l. The mechanism of action of Rapastinel acetate is related to the reduction of affinity to intracellular calcium inactivation sites, which provides a theoretical basis for enhancing conductance mediated by NMDAR .
    Rapastinel acetate

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