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Results for "

nociceptive response

" in MedChemExpress (MCE) Product Catalog:

8

Inhibitors & Agonists

2

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-N8487

    Others Neurological Disease Inflammation/Immunology
    7-Methoxyflavone is a compound isolated from Zornia brasiliensis. 7-Methoxyflavone has peripheral antinociceptive activity. 7-Methoxyflavone inhibits paw-licking time in the neurogenic phase of the formalin pain response (65.6%) and did not decrease the nociceptive response in the inflammatory phase .
    7-Methoxyflavone
  • HY-136207

    nAChR Neurological Disease
    TC-2559 idifumarate is a CNS-selective, orally active α4β2 subtype of nicotinic acetylcholine receptor (nAChR) partial agonist (EC50=0.18 μM). TC-2559 difumarate shows selectivity for α4β2 over α2β4, α4β4 and α3β4 receptors, with EC50s in the range of 10-30 µM. Antinociceptive effect .
    TC-2559 difumarate
  • HY-N5025

    P2X Receptor Apoptosis Inflammation/Immunology Cancer
    Bullatine A, a diterpenoid alkaloid of the genus Aconitum, possesses anti-rheumatic, anti-inflammatory and anti-nociceptive effects. Bullatine A is a potent P2X7 antagonist, inhibits ATP-induced cell death/apoptosis and P2X receptor-mediated inflammatory responses . Bullatine A attenuates pain hypersensitivity, regardless of the pain models employed .
    Bullatine A
  • HY-13509
    CCG-50014
    2 Publications Verification

    RGS Protein Inflammation/Immunology
    CCG-50014 is the most potent against the regulator of G-protein signaling protein type 4 (RGS4) (IC50 =30 nM) and is >20-fold selective for RGS4 over other RGS proteins. CCG-50014 binds covalently to the RGS, forming an adduct on two cysteine residues located in an allosteric regulatory site . CCG50014, reduces nociceptive responses and enhances opioid-mediated analgesic effects in the mouse formalin test .
    CCG-50014
  • HY-113866

    5-HT Receptor Neurological Disease
    E-55888 is a selective and potent agonist of 5-HT7 receptor and 5-HT1A receptor with Ki values of 2.5 nM and 700 nM, respectively, which has analgesic and antinociceptive effects. E-55888 reduces the nociceptive response of Capsaicin (HY-10448) sensitized mice .
    E-55888
  • HY-10635

    TRP Channel Inflammation/Immunology Cancer
    ABT-102 is a potent and highly selective Vanilloid Receptor (TRPV1) receptor antagonist. ABT-102 potently and reversibly increases heat pain thresholds and reduced painfulness of suprathreshold oral/cutaneous heat. ABT-102 reduces nociceptive responses of animals in models of inflammatory, bone cancer, postoperative, and osteoarthritic pain .
    ABT-102
  • 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-15026

    Endogenous Metabolite Inflammation/Immunology
    ATB-429, a novel H2S-releasing derivative of mesalamine, demonstrates significant anti-nociceptive and anti-inflammatory effects in models of irritable bowel syndrome (IBS). By releasing hydrogen sulfide (H2S), ATB-429 modulates colorectal distension-induced hypersensitivity in both healthy and postcolitic rats. It attenuates abdominal withdrawal responses and suppresses spinal c-Fos mRNA expression, indicating its potential to alleviate pain associated with gastrointestinal inflammation. Moreover, ATB-429 down-regulates colonic cyclooxygenase-2 and interleukin-1β mRNA expression, effects not observed with mesalamine alone. The mechanism involves ATP-sensitive K+ (KATP) channels, as evidenced by reversal of ATB-429's effects with glibenclamide. These findings suggest ATB-429 could offer therapeutic benefits for managing painful intestinal disorders linked to inflammation .
    ATB 429

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