4 Results for "

histamine neurons

" in MedChemExpress (MCE) Product Catalog:
Products (4)

4 Results for "histamine neurons" in MCE Product Catalog:

Cat. No.: HY-B1177
CAS No.: 483-63-6
Research Areas:  

Infection

Crotamiton is a TRPV4 inhibitor. Crotamiton inhibits TRPV4 currents. Crotamiton inhibits TRPV4 selective agonist-induced pruritus-related behaviors in mice. Crotamiton inhibits Histamine- and Chloroquine-induced calcium influx via the H1R/TRPV1, MRGPRA3/TRPA1 pathways, and also suppresses calcium influx in primary mouse dorsal root ganglion neurons. Crotamiton is applicable to research related to pruritus, scabies, and non-scabietic pruritus .
loading...
    loading...
Cat. No.: HY-109074
CAS No.: 1164115-89-2
Purity:  ≥95.0%
Synonyms: SENS-111
Target:  

Histamine Receptor

Research Areas:  

Neurological Disease

Seliforant (SENS-111) is a selective, orally active histamine H4 receptor antagonist. Seliforant inhibits the sustained activity of vestibular neurons and modulates vestibular-related responses. Seliforant reduces spontaneous nystagmus in rats with excitotoxic acute unilateral vestibular loss. Seliforant shows no sedative effect. Seliforant can be used in research related to acute unilateral vestibular loss, vestibular dysfunction, and acute unilateral vestibular lesions .
loading...
    loading...
Cat. No.: HY-B1177R
CAS No.: 483-63-6
Research Areas:  

Infection

Crotamiton (Standard) is the analytical standard of Crotamiton. This product is intended for research and analytical applications. Crotamiton is a TRPV4 inhibitor. Crotamiton inhibits TRPV4 currents. Crotamiton inhibits TRPV4 selective agonist-induced pruritus-related behaviors in mice. Crotamiton inhibits Histamine- and Chloroquine-induced calcium influx via the H1R/TRPV1, MRGPRA3/TRPA1 pathways, and also suppresses calcium influx in primary mouse dorsal root ganglion neurons. Crotamiton is applicable to research related to pruritus, scabies, and non-scabietic pruritus .
loading...
    loading...
Cat. No.: HY-L013
3,961 compounds

Neuronal Signaling is involved in the regulation of the mechanisms of the central nervous system (CNS) such as its structure, function, genetics and physiology as well as how this can be applied to understand diseases of the nervous system. Every information processing system in the CNS is composed of neurons and glia, neurons have evolved unique capabilities for intracellular signaling (communication within the cell) and intercellular signaling (communication between cells). G protein-coupled receptors (GPCRs), including 5-HT receptor, histamine receptor, opioid receptor, etc. are the largest class of sensory proteins and are important therapeutic targets in Neuronal Signaling. Besides, Notch signaling, such as β- and γ-secretase, also plays multiple roles in the development of the CNS including regulating neural stem cell (NSC) proliferation, survival, self-renewal and differentiation. GPCR dysfunction caused by receptor mutations and environmental challenges contributes to many neurological diseases. Notch signaling in neurons, glia, and NSCs is also involved in pathological changes that occur in disorders such as stroke, Alzheimer's disease and CNS tumors. Thus, targeting Neuronal Signaling, such as notch signaling and GPCRs, can be used as therapeutic interventions for several different CNS disorders.

MCE designs a unique collection of 3,961 Neuronal Signaling-related compounds that act as a useful tool for the research of neuronal regulation and neuronal diseases.