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Pathways Recommended: Neuronal Signaling
Results for "

Central neuronal systems

" in MedChemExpress (MCE) Product Catalog:

12

Inhibitors & Agonists

1

Screening Libraries

1

Fluorescent Dye

3

Peptides

1

MCE Kits

1

Inhibitory Antibodies

4

Natural
Products

Targets Recommended:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-D1427

    Fluorescent Dye Neurological Disease
    Di-2-ANEPEQ is a voltage sensitive membrane potential fluorescence dye. Di-2-ANEPEQ can be used for the evaluation of voltage-sensitive fluorescence dyes for monitoring neuronal activity in the embryonic central nervous system .
    Di-2-ANEPEQ
  • HY-14316C

    Ebanicline tosylate; ABT-594 tosylate

    nAChR Neurological Disease
    Tebanicline tosylate, an analogue of epibatidine, is a neuronal nicotinic acetylcholine receptor agonist. Tebanicline tosylate exhibits potent antinociceptive effects and has a high affinity for the α4β2 neuronal nicotinic acetylcholine receptor subunit in the central nervous system.
    Tebanicline tosylate
  • HY-P99797

    JR-141

    Transferrin Receptor Neurological Disease
    Pabinafusp alfa (JR-141) is a transferrin receptor-targeting antibody consisting of Iduronate 2-sulfatase (HY-P76399) and an anti-human transferrin receptor antibody. Pabinafusp alfa is blood-brain permeable and prevents heparan sulfate (HS) deposition in the central nervous system of mucopolysaccharidosis II (MPS II) mice. Pabinafusp alfa improves learning and prevents central nervous system neuronal damage in mice .
    Pabinafusp alfa
  • HY-P1333

    Opioid Receptor Apoptosis Caspase Endogenous Metabolite Neurological Disease
    Dynorphin A is an endogenous opioid peptide involved in inhibitory neurotransmission in the central nervous system (CNS). Dynorphin A is a highy potent kappa opioid receptor (KOR) agonist, and is also an agonist for other opioid receptors, such as mu (MOR) and delta (DOR). Dynorphin A can induce neuronal death, and can be used in the research of neurological disease .
    Dynorphin A
  • HY-108234

    VU 255035

    mAChR Neurological Disease
    VU0255035 is a highly selective and competitive M1 mAChR antagonist. VU0255035 blocks M1 mAChR signals to reduce epileptic seizures and regulate neuronal membrane potential. VU0255035 can be used in research related to central nervous system diseases, such as epilepsy, Parkinson's disease, and dystonia .
    VU 0255035
  • HY-113498
    Sphingomyelin
    1 Publications Verification

    Endogenous Metabolite Neurological Disease Metabolic Disease Inflammation/Immunology
    Sphingomyelin is a eukaryotic sphingolipid and one of the major constituents of cell membranes and particularly abundant in the myelin sheath that surrounds neuronal axons. Sphingomyelin plays an important role in cell processes, the regulation of inflammatory responses, and signal transduction. Sphingomyelin metabolism is associated with various central nervous system diseases and Niemann–Pick disease .
    Sphingomyelin
  • HY-113357

    Endogenous Metabolite Neurological Disease Inflammation/Immunology
    m-Coumaric acid is a polyphenol metabolite from caffeic acid, formed by the gut microflora and the amount in human biofluids is diet-dependant. m-Coumaric acid is a BBB-penetrant metabolite of chlorogenic acid. m-Coumaric acid stimulates the cerebral nerves in vitro. m-Coumaric acid can evoke neurite outgrowth in hippocampal neuronal cells. m-Coumaric acid can promote neuronal differentiation. m-Coumaric acid increases spontaneous locomotor activity in mice by acting on the central nervous system. m-Coumaric acid inhibits the oxidation of L-dopa by epidermis tyrosinase. m-Coumaric acid attenuates non-catalytic protein glycosylation in retinas of diabetic rats .
    m-Coumaric acid
  • HY-123280

    Drug Metabolite Neurological Disease
    SCH 54388 is an orally active metabolite of Felbamate (HY-B0184). SCH 54388 markedly reduces the deficit-producing effects of Scopolamine (HY-N0296) or Dizocilpine (HY-15084B) in a dose-dependent manner without significant toxicity up to 300 mg/kg. SCH 54388 can be used for central neuronal systems related diseases research .
    SCH 54388
  • HY-14316

    Ebanicline; ABT-594

    nAChR Neurological Disease
    Tebanicline, an analogue of epibatidine, is a neuronal nicotinic acetylcholine receptor agonist. Tebanicline exhibits potent antinociceptive effects and has a high affinity for the α4β2 neuronal nicotinic acetylcholine receptor subunit in the central nervous system.
    Tebanicline
  • HY-P1333A

    Opioid Receptor Apoptosis Caspase Endogenous Metabolite Neurological Disease
    Dynorphin A TFA is an endogenous opioid peptide involved in inhibitory neurotransmission in the central nervous system (CNS). Dynorphin A TFA is a highy potent kappa opioid receptor (KOR) agonist, and is also an agonist for other opioid receptors, such as mu (MOR) and delta (DOR). Dynorphin A TFA can induce neuronal death, and can be used in the research of neurological disease .
    Dynorphin A TFA
  • HY-P1625

    Dynorphin A ethylamide (1-9)

    Opioid Receptor Neurological Disease
    Daeatal (Dynorphin A ethylamide (1-9)) is an ethylamine-modified dynorphin fragment that can be used in the study of analgesia, addiction, depression, etc. Dynorphin A is an endogenous opioid peptide involved in inhibitory neurotransmission in the central nervous system (CNS). Dynorphin A is a highy potent kappa opioid receptor (KOR) agonist, and is also an agonist for other opioid receptors, such as mu (MOR) and delta (DOR). Dynorphin A can induce neuronal death, and can be used in the research of neurological disease .
    Daeatal
  • HY-113357R

    Reference Standards Endogenous Metabolite Neurological Disease Inflammation/Immunology
    m-Coumaric acid (Standard) is the analytical standard of m-Coumaric acid. This product is intended for research and analytical applications. m-Coumaric acid is a polyphenol metabolite from caffeic acid, formed by the gut microflora and the amount in human biofluids is diet-dependant. m-Coumaric acid is a BBB-penetrant metabolite of chlorogenic acid. m-Coumaric acid stimulates the cerebral nerves in vitro. m-Coumaric acid can evoke neurite outgrowth in hippocampal neuronal cells. m-Coumaric acid can promote neuronal differentiation. m-Coumaric acid increases spontaneous locomotor activity in mice by acting on the central nervous system. m-Coumaric acid inhibits the oxidation of L-dopa by epidermis tyrosinase. m-Coumaric acid attenuates non-catalytic protein glycosylation in retinas of diabetic rats .
    m-Coumaric acid (Standard)

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