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5-HT responses

" in MedChemExpress (MCE) Product Catalog:

26

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1

Peptides

5

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-15574
    Piboserod
    3 Publications Verification

    SB-207266

    5-HT Receptor Cardiovascular Disease
    Piboserod is an orally available selective antagonist of the 5-HT4 receptor, with a Ki value of approximately 0.1 nM for human 5-HT4 receptors. Piboserod can competitively bind to the 5-HT4 receptor and block the activation of the 5-HT4 receptor. Piboserod can inhibit the enhancing effect of 5-HT on the nerve-mediated contraction response of the human bladder detrusor muscle. Piboserod is mainly used in the research of urinary system diseases (such as overactive bladder) and cardiovascular diseases (such as chronic heart failure) .
    Piboserod
  • HY-160921

    SL65.0155 free base

    5-HT Receptor Neurological Disease
    Capeserod (SL65.0155 free base) is an agonist for serotonin receptor (5-HT receptor), with a Ki of 0.6 nM for 5-HT4 receptor. Capeserod enhances expression of phopshorilated cAMP-response element binding protein (p-CREB), vascular endothelium growth factor (VEGF), brain-derived neurotrophic factor (BDNF) and B cell lymphoma-2 (Bcl-2) proteins in hippocampus, and exhibits antidepressant-like efficacy in Wistar rats models .
    Capeserod
  • HY-100923

    PKA 5-HT Receptor EGFR Neurological Disease
    H-9 Dihydrochloride is a PKA (protein kinase) inhibitor. H-9 Dihydrochloride (10 μM) significantly reduces the excitatory response to 5-HT. H-9 Dihydrochloride also has a direct effect on pharyngeal activity. H-9 Dihydrochloride inhibits signal-transduction and cell growth in EGF (epidermal growth factor)-dependent epithelial cell lines .
    H-9 Dihydrochloride
  • HY-111291

    5-HT Receptor Neurological Disease Endocrinology
    ICI 169369 (free base) is an orally active, selective and non-competitive antagonist against 5HT receptor. ICI 169369 (free base) blunts the vasopressin (AVP), but not the ACTH, prolactin or growth hormone reponses to insulin-induced hypoglycaemia. ICI 169369 (free base) blocks centrally mediated 5-HT responses and lowers portal pressure in portal hypertensive rats .
    ICI 169369 free base
  • HY-162423

    5-HT Receptor Androgen Receptor Neurological Disease
    CYB210010 is an orally bioavailable, long-acting serotonin 5-HT2 receptor agonist that selectively targets 5-HT2A and 5-HT2C receptors (EC50: 4.1 n, 7.3 nM). CYB210010 can enter the central nervous system, cause a head twitch response (HTR), and is not prone to behavioral tolerance during chronic administration .
    CYB210010
  • HY-115375

    5-HT Receptor Neurological Disease
    50595 hydrochloride is a selective noncompetitive cisapride antagonist that interferes with the activity of cisapride and BRL 24924. R 50595 hydrochloride has no effect on the response to electrical stimulation at concentrations up to 3 X 10(-7) M. R 50595 hydrochloride antagonizes the effects of cisapride and BRL 24924 in a noncompetitive manner. R 50595 hydrochloride completely abolishes the effects of 5-HT at a concentration of 3 X 10(-7) M and also antagonizes the effects of 5-HT in a noncompetitive manner .
    R 50595 hydrochloride
  • HY-117063

    5-HT Receptor Endocrinology
    LEK 8841 methanesulfonate is a gastrointestinal calming agent with strong selective 5-HT2 receptor antagonist activity. The antipsychotic potential of LEK 8841 has made it the focus of research into alternative medicines. LEK 8841 behaves as a pure competitive antagonist in response to 5-HT and norepinephrine, with pA2 values of 7.93 and 6.45, respectively. The selectivity of LEK 8841 is better than that of the comparative drug ketanserin, making it an important reference value in corresponding receptor research. Studies related to structural modifications have shown that LEK 8841 exhibits high affinity for 5-HT2 receptors and low alpha-adrenergic receptor activity .
    LEK 8841 methanesulfonate
  • HY-118775

    5-HT Receptor Others
    LEK 8804 is a compound with 5-HT1A receptor agonist and 5-HT2 receptor antagonist properties, and has the activity of modulating related receptor-mediated behavioral responses. LEK 8804 can induce spontaneous tail-flick response in rats in a dose-dependent manner, showing complete 5-HT1A agonist activity, and can inhibit 5-HTP-induced head twitch response in mice, probably through antagonism of 5-HT2 receptors rather than agonism of 5-HT1A receptors.
    LEK 8804
  • HY-122303

    5-HT Receptor Neurological Disease
    4-hydroxy DiPT hydrochloride is an 5-HT2A agonist that induces the head-twitch response (HTR) in mice, indicating psychoactivity .
    4-hydroxy DiPT hydrochloride
  • HY-13200B

    5-HT Receptor Neurological Disease
    BRL-15572 is a selective antagonist of h5-HT1D, displays high affinity for h5-HT1D receptors. BRL-15572 could be useful pharmacological agents to characterise 5-HT1D receptor mediated responses .
    BRL-15572
  • HY-13200A

    5-HT Receptor Neurological Disease
    BRL-15572 hydrochloride is a selective antagonist of h5-HT1D, displays high affinity for h5-HT1D receptors. BRL-15572 hydrochloride could be useful pharmacological agents to characterise 5-HT1D receptor mediated responses .
    BRL-15572 hydrochloride
  • HY-13200

    5-HT Receptor Neurological Disease
    BRL-15572 dihydrochloride is a selective antagonist of h5-HT1D, displays high affinity for h5-HT1D receptors. BRL-15572 dihydrochloride could be useful pharmacological agents to characterise 5-HT1D receptor mediated responses .
    BRL-15572 dihydrochloride
  • HY-146232

    F 14679

    5-HT Receptor Others
    F 13714 (F 14679) is a prototypical 5-HT1A agonist with a pKi of 10.23. F 13714 induces large Ca 2+ responses .
    F 13714
  • HY-N0775

    7-Isocorynoxeine

    5-HT Receptor Neurological Disease
    Isocorynoxeine, an isorhynchophylline-related alkaloid, exhibits a dose-dependent inhibition of 5-HT2A receptor-mediated current response with an IC50 of 72.4 μM.
    Isocorynoxeine
  • HY-100552

    5-HT Receptor Neurological Disease
    VUF10166 is a potent and high-affinity 5-HT3 receptor antagonist, with Ki values of 0.04 nM (5-HT3A) and 22 nM (5-HT3AB). VUF10166 inhibits 5-HT-induced responses at 5-HT3A and 5-HT3AB receptors at nanomolar concentrations. At 5-HT3 receptor, VUF10166 at higher concentrations also acts as a partial agonist, with an EC50 of 5.2 μM .
    VUF10166
  • HY-169446

    5-HT Receptor Neurological Disease
    ALEPH (hydrochloride) is the h5-HT2A and h5-HT2B partial agonist with the EC50 values of 10.3 nM and 19.2 nM, respectively. ALEPH (hydrochloride) causes head twitch response in mice (ED50: 0.80 mg/kg) .
    ALEPH hydrochloride
  • HY-A0139

    NSC 108165; Navan; Navane

    Sigma Receptor mAChR Histamine Receptor Dopamine Receptor Adrenergic Receptor Others
    Thiothixene is a typical antipsychotic. It selectively binds to dopamine D2 over D1, D3, and D4 receptors (Kis=0.417, 338, 186.2, and 363.1 nM, respectively). Thiothixene also binds to various serotonin (5-HT), histamine H1, α1- and α2-adrenergic, muscarinic acetylcholine, and sigma receptors (Kis=15-5,754 nM) as well as the dopamine, norepinephrine, and serotonin transporters (Kis=3.16-30 μM). In vivo, thiothixene reduces spontaneous and amphetamine-induced locomotor activity in rats. It enhances latent inhibition, as measured by a decreased lick latency in response to light and foot shock stimuli, which is a measure of selective attention in rats.3 Thiothixene also increases competitive behavior in submissive mice, indicating antidepressant-like behavior.
    Thiothixene
  • 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-N0775R

    5-HT Receptor Neurological Disease
    Isocorynoxeine (Standard) is the analytical standard of Isocorynoxeine. This product is intended for research and analytical applications. Isocorynoxeine, an isorhynchophylline-related alkaloid, exhibits a dose-dependent inhibition of 5-HT2A receptor-mediated current response with an IC50 of 72.4 μM.
    Isocorynoxeine (Standard)
  • HY-121704

    iGluR Neurological Disease
    SR 57227A Free base is a highly selective compound for both peripheral and central 5-HT3 receptors and acts as an inhibitor of NMDA receptor-mediated responses in rat cortical pyramidal cells, demonstrating antidepressant-like effects in rats while reducing isolation-induced aggressive behavior.
    SR 57227A free base
  • HY-B2065

    (-)-Scopolamine hydrochloride; Hyoscine hydrochloride

    mAChR 5-HT Receptor Neurological Disease
    Scopolamine hydrochloride is a non-selective and high affinity (≤1 nM) muscarinic antagonist that is used for the prevention of post-operative nausea and vomiting. Scopolamine readily passes the blood brain barrier. Scopolamine also reversibly inhibits 5-HT3 receptor-responses with an IC50 of 2.09 μM . Scopolamine induces Alzheimer's disease-like pathology through alteration of cholinergic system .
    Scopolamine hydrochloride
  • HY-116680

    5-HT Receptor Cardiovascular Disease Neurological Disease
    LY53857 is a potent antagonist of vasoconstriction and serotonin-mediated 5-HT2 receptors. LY53857 did not reduce mean arterial blood pressure in spontaneously hypertensive rats (SHR) at doses that blocked the depressor response to serotonin and blocked central serotonin receptors. In addition, LY53857 was able to enhance neurotransmitter release in rat vas deferens and guinea pig ileal nerves .
    LY53857
  • HY-119820

    SR57746A free base

    5-HT Receptor Neurological Disease
    Xaliproden free base is an orally active and selective 5-HT1A receptor agonist. Xaliproden free base shows analgesic effect against acute tonic nociceptive pain and has neuroprotective effects. Xaliproden free base has an acute inhibitory effect on paclitaxel (HY-B0015)-induced mechanical allodynia by inhibiting the excessive response of primary afferent neurons .
    Xaliproden free base
  • HY-N1957
    Gamma-Mangostin
    2 Publications Verification

    γ-Mangostin

    5-HT Receptor COX Transthyretin (TTR) Metabolic Disease Inflammation/Immunology Cancer
    Gamma-Mangostin is a novel competitive 5-hydroxytryptamine 2A (5-HT2A) receptor antagonist and potent epoxidase 2 (COX-2) inhibitor, as well as a transthyroxin protein (TTR) profibrosis inhibitor. Gamma-Mangostin binds to the thyroxine (T4)-binding sites and stabilized the TTR tetramer . Gamma-Mangostin inhibits [3 H] spiperone binding to cultured rat aortic myocytes (IC50=3.5 nM) and reduces The perfusion pressure response of rat coronary artery to 5-HT2A (IC50=0.32 μM). Gamma-Mangostin has anti-inflammatory, antibacterial, antioxidant and anticancer activities, and can be used in the study of metabolic disorders such as diabetes .
    Gamma-Mangostin
  • HY-N1957R

    5-HT Receptor COX Transthyretin (TTR) Metabolic Disease Inflammation/Immunology Cancer
    Gamma-Mangostin (Standard) is the analytical standard of Gamma-Mangostin. This product is intended for research and analytical applications. Gamma-Mangostin is a novel competitive 5-hydroxytryptamine 2A (5-HT2A) receptor antagonist and potent epoxidase 2 (COX-2) inhibitor, as well as a transthyroxin protein (TTR) profibrosis inhibitor. Gamma-Mangostin binds to the thyroxine (T4)-binding sites and stabilized the TTR tetramer . Gamma-Mangostin inhibits [3H] spiperone binding to cultured rat aortic myocytes (IC50=3.5 nM) and reduces The perfusion pressure response of rat coronary artery to 5-HT2A (IC50=0.32 μM). Gamma-Mangostin has anti-inflammatory, antibacterial, antioxidant and anticancer activities, and can be used in the study of metabolic disorders such as diabetes .
    Gamma-Mangostin (Standard)
  • HY-P1441A

    Sodium Channel Neurological Disease
    Mambalgin 1 TFA is a selective ASIC1a inhibitor (IC50 values are 192 and 72 nM for human ASIC1a and ASIC1a/1b dimer, respectively). Mambalgin 1 TFA binds to closed/inactive channel. Mambalgin 1 TFA is selective for ASIC1a over ASIC2a, ASIC3, TRPV1, P2X2, 5-HT3, Nav1.8, Cav3.2 and Kv1.2 channels. Mambalgin 1 TFA increases latency of withdrawal response in mouse tail-flick and paw-flick tests.
    Mambalgin 1 TFA

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