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Results for "

intracerebroventricular injection

" in MedChemExpress (MCE) Product Catalog:

4

Inhibitors & Agonists

2

Peptides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-103101

    5-HT Receptor Others
    LP44 (hydrochloride) is a selective 5-HT7 agonist with Ki of 0.22 nM. LP44 (hydrochloride) induces hypothermic effect in a dose-dependent manner by intracerebroventricular injection. LP44 (hydrochloride) not causes considerable hypothermic response by intraperitoneal administration .
    LP44 hydrochloride
  • HY-P1426

    Potassium Channel Neurological Disease
    AmmTX3 is a peptide toxin identified from the venom of the scorpion Androctonus mauretanicus. AmmTX3 is a highly specific blocker of Kv4 channels, which selectively and almost completely blocks transient A-type K + currents with a Ki of 131 nM. AmmTX3 induces epileptiform behaviors and causes death in mice receiving intracerebroventricular injection. AmmTX3 increases the excitability of dentate gyrus granule cells, reduces GABAergic inhibition, enhances and stabilizes the EPSP-spike component of long-term potentiation, and impairs reference memory. AmmTX3 can be used in research related to pain, epilepsy, and autism spectrum disorder .
    AmmTX3
  • HY-103101R

    Reference Standards 5-HT Receptor Others
    LP44 hydrochloride (Standard) is the analytical standard of LP44 hydrochloride (HY-103101). This product is intended for research and analytical applications. LP44 hydrochloride is a selective 5-HT7 agonist with Ki of 0.22 nM. LP44 hydrochloride induces hypothermic effect in a dose-dependent manner by intracerebroventricular injection. LP44 hydrochloride not causes considerable hypothermic response by intraperitoneal administration .
    LP44 hydrochloride (Standard)
  • HY-P1426A

    Potassium Channel Neurological Disease
    AmmTX3 TFA is a peptide toxin identified from the venom of the scorpion Androctonus mauretanicus. AmmTX3 TFA is a highly specific blocker of Kv4 channels, which selectively and almost completely blocks transient A-type K + currents with a Ki of 131 nM. AmmTX3 TFA induces epileptiform behaviors and causes death in mice receiving intracerebroventricular injection. AmmTX3 TFA increases the excitability of dentate gyrus granule cells, reduces GABAergic inhibition, enhances and stabilizes the EPSP-spike component of long-term potentiation, and impairs reference memory. AmmTX3 TFA can be used in research related to pain, epilepsy, and autism spectrum disorder .
    AmmTX3 TFA

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