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nerve function

" in MedChemExpress (MCE) Product Catalog:

22

Inhibitors & Agonists

1

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1

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3

Biochemical Assay Reagents

4

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2

Isotope-Labeled Compounds

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Oligonucleotides

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-W129456

    Biochemical Assay Reagents Neurological Disease
    Isaxonine acts as a modifier of the surface pH of the bilayer . Isaxonine accelerates the rate of peripheral nerve regeneration, stimulate axonal sprouting and promote motor and sensory function recovery . Isaxonine is a neurotrophic agent .
    Isaxonine
  • HY-122376

    D-Trans-Allethrin; Esbiol

    Sodium Channel Neurological Disease
    S-Bioallethrin (D-Trans-Allethrin) is a pyrethroid insecticide. S-Bioallethrin disrupts nerve function by modifying the gating kinetics of transitions between the conducting and nonconducting states of voltage-gated sodium channels. S-Bioallethrin also causes inhibition of lymphocyte proliferation and induces histamine release from human basophils .
    S-Bioallethrin
  • HY-111793A
    NUCC-390 dihydrochloride
    4 Publications Verification

    CXCR Neurological Disease
    NUCC-390 dihydrochloride is a novel and selective small-molecule CXCR4 receptor agonist. NUCC-390 dihydrochloride induces internalization of CXCR4 receptors and acts in an opposite way of AMD3100 (HY-10046) . NUCC-390 dihydrochloride promotes nerve recovery of function after neurodegeneration in vivo .
    NUCC-390 dihydrochloride
  • HY-B0282A
    Acetylcholine bromide
    Maximum Cited Publications
    14 Publications Verification

    ACh bromide

    Biochemical Assay Reagents Others Cancer
    Acetylcholine bromide is an organic choline salt compound commonly used in neurophysiology and pharmacology experiments. It plays an important role in the nervous system, acting as a neurotransmitter that transmits signals and regulates many important physiological functions. Due to its special biological activity, Acetylcholine bromide is widely used in the study of neurotransmitters, nerve damage and muscle movement.
    Acetylcholine bromide
  • HY-138257

    (S)-AS1069562; (S)-YM-08054 benzenesulfonate

    5-HT Receptor Neurological Disease
    (S)-AS1069562 is the S-enantiomer of AS1069562 (HY-138257A). AS1069562 is an orally active 5-HT and NE reuptake inhibitor, with IC50 values of 0.35 μM and 3.3 μM, respectively. AS1069562 possesses curative-like analgesic effect. AS1069562 might improve nerve function impairment via the amelioration of neurotrophic support .
    (S)-Indeloxazine benzenesulfonate
  • HY-W751874

    Mitochondrial Metabolism Neurological Disease
    Acetyl methylene blue can be used to synthesize mitochondrial development stimulators, which can be used for eye diseases related to insufficient mitochondrial function in nerve cells .
    Acetyl methylene blue
  • HY-W698686

    Biochemical Assay Reagents
    β-Galactosyl-C18-ceramide is a bioactive molecule that promotes the regulation of nerve cells, regulates protein kinase C activity, and affects hormone receptors. β-Galactosyl-C18-ceramide is widely used in neuroscience research to explore its effects on nerve cell growth and function. The regulatory function of β-Galactosyl-C18-ceramide makes it a potential application prospect in compound development and disease inhibition.
    β-Galactosyl-C18-ceramide
  • HY-168172

    Lactate Dehydrogenase Cancer
    LDH-IN-3 (compound E38) is an inhibitor of LDH, promising protective agent for ischemic nerve damage in the eye and brain. LDH-IN-3 acts its function via HO-1/SIRT1 pathway. .
    LDH-IN-3
  • HY-161118

    Others Neurological Disease
    MB327 is a bipyridine nonoxime compound that restores neuromuscular function. MB327 restores the activity of nicotinamide acetylcholine receptors (nAChRs) for carbachol desensitization in a typical type II PAM manner. MB327 can neutralize nerve agent poisoning .
    MB327
  • HY-W698686S

    Isotope-Labeled Compounds Others Others
    β-Galactosyl-C18-ceramide-d35 is deuterium labeled β-Galactosyl-C18-ceramide. β-Galactosyl-C18-ceramide is a bioactive molecule that promotes the regulation of nerve cells, regulates protein kinase C activity, and affects hormone receptors. β-Galactosyl-C18-ceramide is widely used in neuroscience research to explore its effects on nerve cell growth and function. The regulatory function of β-Galactosyl-C18-ceramide makes it a potential application prospect in compound development and disease inhibition .
    β-Galactosyl-C18-ceramide-d35
  • HY-111793
    NUCC-390
    4 Publications Verification

    CXCR Neurological Disease
    NUCC-390 is a novel and selective small-molecule CXCR4 receptor agonist. NUCC-390 induces internalization of CXCR4 receptors and acts in an opposite way of AMD3100 (HY-10046) . NUCC-390 promotes nerve recovery of function after neurodegeneration in vivo .
    NUCC-390
  • HY-138257A

    AS1069562; (R)-YM-08054 benzenesulfonate

    5-HT Receptor Serotonin Transporter Neurological Disease Metabolic Disease
    (R)-Indeloxazine benzenesulfonate (AS1069562) is an orally active 5-HT and NE reuptake inhibitor, with IC50 values of 0.35 μM and 3.3 μM, respectively. (R)-Indeloxazine benzenesulfonate (AS1069562) possesses curative-like analgesic effect. (R)-Indeloxazine benzenesulfonate (AS1069562) might improve nerve function impairment via the amelioration of neurotrophic support .
    (R)-Indeloxazine benzenesulfonate
  • HY-12807A

    5-Fluoro-2-indolyl deschlorohalopemide hydrochloride

    Phospholipase Cardiovascular Disease Neurological Disease Inflammation/Immunology Cancer
    FIPI hydrochloride is a phospholipase D (PLD) inhibitor with an IC50 for PLD1 and PLD2 of about 25 nM. FIPI hydrochloride regulates cytoskeletal recombination, cell diffusion and chemotaxis. FIPI hydrochloride can be used in cancer research. In addition, FIPI hydrochloride can enhance the secretion and aggregation of platelet dense particles, inhibit thrombosis, reduce ischemic stroke infarct volume and improve nerve function .
    FIPI hydrochloride
  • HY-W012788
    Maltol
    2 Publications Verification

    Endogenous Metabolite Apoptosis Infection Neurological Disease
    Maltol, a type of aromatic compound, is an antioxidant agent. Maltol enhances neural function by mitigating oxidative stress and cell apoptosis. Maltol is an inhibitor of oxidative damage in nerve cells and is effective in preventing diabetic peripheral neuropathy (DPN). Maltol is used extensively as a safe flavoring agent and food preservative. Maltol is a metal ion chelator that can be used in the field of catalysis, cosmetics, and medicine .
    Maltol
  • HY-12807
    FIPI
    4 Publications Verification

    5-Fluoro-2-indolyl deschlorohalopemide

    Phospholipase Cardiovascular Disease Neurological Disease Inflammation/Immunology Cancer
    FIPI is a phospholipase D (PLD) inhibitor with an IC50 for PLD1 and PLD2 of about 25 nM. FIPI regulates cytoskeletal recombination, cell diffusion and chemotaxis. FIPI can be used in cancer research. In addition, FIPI can enhance the secretion and aggregation of platelet dense particles, inhibit thrombosis, reduce ischemic stroke infarct volume and improve nerve function .
    FIPI
  • HY-B1661

    Hexone chloride

    Biochemical Assay Reagents Cardiovascular Disease Others
    Hexamethonium Chloride Dihydrate is a synthetic organic compound commonly used as a ganglion blocking agent, which means it blocks the transmission of nerve impulses between ganglion cells in the autonomic nervous system. Hexamethonium Chloride Dihydrate is used in various medical applications such as lowering blood pressure or inhibiting certain types of neuropathic pain. It works by inhibiting the release of acetylcholine, a neurotransmitter that plays a key role in regulating many bodily functions.
    Hexamethonium chloride
  • HY-W027553

    NIK-247 free base

    Cholinesterase (ChE) Potassium Channel Sodium Channel Neurological Disease Metabolic Disease
    Ipidacrine is orally active and brain-penetrant AChE and BuChE inhibitors with IC50 values of 1 μM and 1.9 μM, respectively, which is also a partial agonist of M2-cholinergic receptors and a reversible cholinesterase inhibitor. Ipidacrine has a stimulating effect on neuromuscular transmission and excitation along the nerve fibres with a moderately anti-pain effect. Ipidacrine is an aminopyridines and is structurally similar to Tacrine (HY-111338). Ipidacrine is effective in various amnesia models, improves erectile function and inhibits K + and Na +-channels in the neuronal membrane in diabetic rats. Ipidacrine is promising for research of Alzheimer’s disease, ischaemic stroke, idiopathic neuropathy of the facial nerve, diabetes mellitus-induced erectile dysfunction and other deficits in central or peripheral cholinergic deseases .
    Ipidacrine
  • HY-W012788R

    Endogenous Metabolite Apoptosis Infection Neurological Disease
    Maltol (Standard) is the analytical standard of Maltol. This product is intended for research and analytical applications. Maltol, a type of aromatic compound, is an antioxidant agent. Maltol enhances neural function by mitigating oxidative stress and cell apoptosis. Maltol is an inhibitor of oxidative damage in nerve cells and is effective in preventing diabetic peripheral neuropathy (DPN). Maltol is used extensively as a safe flavoring agent and food preservative. Maltol is a metal ion chelator that can be used in the field of catalysis, cosmetics, and medicine .
    Maltol (Standard)
  • HY-W012788S

    Isotope-Labeled Compounds Endogenous Metabolite Apoptosis Infection Neurological Disease
    Maltol-d3 is a deuterium labeled Maltol (HY-W012788). Maltol, a type of aromatic compound, is an antioxidant agent. Maltol enhances neural function by mitigating oxidative stress and cell apoptosis. Maltol is an inhibitor of oxidative damage in nerve cells and is effective in preventing diabetic peripheral neuropathy (DPN). Maltol is used extensively as a safe flavoring agent and food preservative. Maltol is a metal ion chelator that can be used in the field of catalysis, cosmetics, and medicine .
    Maltol-d3
  • HY-110220

    TRP Channel Neurological Disease
    CIM0216, a synthetic TRPM3 ligand, acts as a potent and selective agonist of TRPM3. CIM0216 exhibits selectivity for TRPM3 over TRPM1, TRPM2 and TRPM4-8. CIM0216 acts in a TRPM3-dependent manner to induce pain and evoke neuropeptide release from sensory nerve terminals in vitro. CIM0216 is a powerful tool for studies of the physiological functions of TRPM3, and can be used for neurogenic inflammation research .
    CIM0216
  • HY-B1173

    D-(+)-Camphor; (1R)-(+)-Camphor

    Bacterial Neurological Disease Inflammation/Immunology Cancer
    (+)-Camphor (D-(+)-Camphor; (1R)-(+)-Camphor) is an isomer of Camphor. Camphor is an agonist of monoterpenoid transient receptor potential (TRP) channels (such as TRPV1, TRPV3, TRPM8) and an inhibitor of TRPA1 channels. Camphor's derivatives have multiple biological activities, including antibacterial, antiviral, antioxidant, analgesic and anticancer. Camphor can selectively activate cold-sensitive TRP channels and inhibit TRPA1-mediated nociceptive signals. Camphor stimulates the cold-sensing nerve endings in the skin and regulates the activity of ion channels to exert analgesic, anti-inflammatory and anti-itching effects. It also has anti-proliferative and anti-mutagenic activities on tumor cells, which may be related to inhibiting ribosome function or inducing cell apoptosis. Camphor can be absorbed through the skin and (+)-Camphor can be used in the study of muscle and joint pain and inflammation .
    (+)-Camphor
  • HY-B1173R

    D-(+)-Camphor (Standard); (1R)-(+)-Camphor (Standard)

    Bacterial Neurological Disease Inflammation/Immunology Cancer
    (+)-Camphor (Standard) is the analytical standard of (+)-Camphor. This product is intended for research and analytical applications. (+)-Camphor (D-(+)-Camphor; (1R)-(+)-Camphor) is an isomer of Camphor. Camphor is an agonist of monoterpenoid transient receptor potential (TRP) channels (such as TRPV1, TRPV3, TRPM8) and an inhibitor of TRPA1 channels. Camphor's derivatives have multiple biological activities, including antibacterial, antiviral, antioxidant, analgesic and anticancer. Camphor can selectively activate cold-sensitive TRP channels and inhibit TRPA1-mediated nociceptive signals. Camphor stimulates the cold-sensing nerve endings in the skin and regulates the activity of ion channels to exert analgesic, anti-inflammatory and anti-itching effects. It also has anti-proliferative and anti-mutagenic activities on tumor cells, which may be related to inhibiting ribosome function or inducing cell apoptosis. Camphor can be absorbed through the skin and (+)-Camphor can be used in the study of muscle and joint pain and inflammation .
    (+)-Camphor (Standard)

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