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Results for "

insect olfactory

" in MedChemExpress (MCE) Product Catalog:
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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-125982

    Insecticide Others
    VUAA1 is an insect odorant co-receptor (Orco) agonist. VUAA1 activates both heteromeric and homomeric Orco-containing channels. VUAA1 can disrupt the destructive behaviors of nuisance insects. VUAA1 can be used for insect olfactory research .
    VUAA1
  • HY-118967

    VU0183254

    HCN Channel Others
    VUANT1 (VU0183254) is an allosteric antagonist of insect odorant receptor ion channels, which has the activity of inhibiting insect odorant receptor signaling. VUANT1 can inhibit the activation of insect odorant receptors through allosteric regulation, which is important for the study of the molecular mechanism of insect olfactory signaling. Although it may be of limited use in insect control programs, it can be used as a pharmacological tool to study related mechanisms.
    VUANT1
  • HY-116144R

    Lcaridin (Standard)

    Reference Standards Parasite Infection
    Picaridin (Standard) is the analytical standard of Picaridin. This product is intended for research and analytical applications. Picaridin (Lcaridin) is a broad spectrum arthropod repellent. The repellent and deterrent activities of Picaridin involve olfactory sensing in mosquitoes, and ticks, via their interactions with odorant receptor proteins .
    Picaridin (Standard)
  • HY-116144
    Picaridin
    3 Publications Verification

    Lcaridin

    Parasite Bacterial Fungal Infection
    Picaridin (Lcaridin) is a broad spectrum arthropod repellent. Picaridin interacts with mosquito and tick olfactory receptor proteins. Picaridin repels Aedes aegypti. Picaridin exhibits considerable antibacterial, anticandidal and antifungal properties .
    Picaridin
  • HY-121787

    OLC20

    Olfactory Receptor Others
    OX1a (OLC20) is an Orco antagonist with non-competitive activity that inhibits the activation of oxygen odor receptors (ORs). OX1a is able to reduce the activation of ORs by competitively inhibiting the effects of Orco agonists. OX1a also shows non-competitive inhibition of odor molecules, which may affect the olfactory-mediated behavior of insects. Through structural optimization, OX1a analogs have shown higher antagonistic potency, indicating that this type of compound may have application potential in a wide range of insect species .
    OX1a

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