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Pathways Recommended: Membrane Transporter/Ion Channel
Results for "

membrane excitability

" in MedChemExpress (MCE) Product Catalog:

6

Inhibitors & Agonists

1

Fluorescent Dye

1

Peptides

Targets Recommended:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-D0127

    Fluorescent Dye Others
    Merocyanin 540 is a fluorescent membrane probe that selectively stains the membranes of a wide variety of electrically excitable cells, but not those of nonexcitable cells (Ex/Em: 540/580 nm) .
    Merocyanin 540
  • HY-108594

    Potassium Channel Metabolic Disease
    PD-118057 is a hERG channel activator without causing hERG blockade. PD-118057 activates hERG channel to suppress changes in membrane excitability .
    PD-118057
  • HY-W013712

    Potassium Channel Neurological Disease
    GI-530159 is a selective opener of TREK1 and TREK2 potassium channels. GI-530159 displays selectivity for TREK1/2 over TRAAK, TASK3 and other potassium channels, with an EC50 of 0.76 μM for TREK1. GI-530159 reduces rat dorsal root ganglion neuron excitability and shows potential analgesic effect .
    GI-530159
  • HY-P1281

    Potassium Channel Neurological Disease
    Kaliotoxin is a peptidyl inhibitor of neuronal BK-Type. Kaliotoxin can specific inhibit Kv channels and calcium-activated potassium channels. Kaliotoxin can be used for the research of the regulation of membrane potential and neuron excitability .
    Kaliotoxin
  • HY-135131

    iGluR Neurological Disease
    Synthalin hydrochloride is a K+ channel blocker with neuronal excitability modulating activity. Synthalin hydrochloride has an effect on NMDA-mediated depolarization, possibly through receptor-mediated modulation of L-glutamate and serotonin (5-HT). The use of Synthalin hydrochloride can enhance the understanding of changes in membrane potential of different neurons and help study the role of polyamines in neuronal excitability .
    Synthalin hydrochloride
  • HY-168166

    Others Neurological Disease
    CHET3 is a sex-selective activator with potent analgesic activity. CHET3 was discovered to be a highly selective omnidirectional modulator of TASK-3-containing K2P channels, including TASK-3 homologues and TASK-3/TASK-1 heterologues. CHET3 exhibited significant analgesic effects in multiple acute and chronic pain models in mice, which could be abolished by pharmacological means or genetic knockout of TASK-3. CHET3 is able to functionally modulate the membrane excitability of specific small sensory neurons, which supports its analgesic effects on thermal hypersensitivity and mechanical hyperalgesia in chronic pain .
    CHET3

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