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Results for "

frog neuromuscular junctions

" in MedChemExpress (MCE) Product Catalog:

4

Inhibitors & Agonists

1

Biochemical Assay Reagents

3

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-P3443
    Peanut agglutinin
    1 Publications Verification

    PNA

    Biochemical Assay Reagents Cancer
    Peanut agglutinin (PNA) is a carbohydrate-recognition protein that binds competitively and irreversibly to cell-surface β-D-Gal (1-3)-GalNAc, and this binding can be inhibited by D-galactose and asialofetuin. Peanut agglutinin recognizes exposed glycoepitopes and reflects the glycosylation status of cells. Peanut agglutinin can label glycoconjugates at neuromuscular junctions to safely visualize synaptic structures. Peanut agglutinin can be used to synthesize dyes to distinguish between normal and tumor tissues. Peanut agglutinin provides support for research on leukemia, Burkitt's tumors, and cutaneous squamous lesions .
    Peanut agglutinin
  • HY-N6609

    nAChR Others
    Magnocurarine is a neuromuscular junction blocker that inhibits muscle contraction by functionally blocking signal transmission without directly damaging nerve or muscle tissues. In frog, mouse and rabbit models, Magnocurarine exerts a dose-dependent paralytic effect, which progresses gradually from limb weakness and loss of righting reflex to respiratory depression and even cardiac arrest. Although high doses cause complete cessation of movement, Magnocurarine does not affect the spinal multineuronal reflex in frogs. Magnocurarine exhibits biological activity similar to that of tubocurarine (HY-125901) in various animal models .
    Magnocurarine
  • HY-N6609B

    nAChR Cardiovascular Disease
    Magnocurarine chloride is a neuromuscular junction blocker that inhibits muscle contraction by functionally blocking signal transmission without directly damaging nerve or muscle tissues. In frog, mouse and rabbit models, Magnocurarine chloride exerts a dose-dependent paralytic effect, which progresses gradually from limb weakness and loss of righting reflex to respiratory depression and even cardiac arrest. Although high doses cause complete cessation of movement, Magnocurarine chloride does not affect the spinal multineuronal reflex in frogs. Magnocurarine chloride exhibits biological activity similar to that of tubocurarine (HY-125901) in various animal models .
    Magnocurarine chloride
  • HY-W795736

    (+)-AH5183

    nAChR Neurological Disease
    (+)-Vesamicol ((+)-AH5183) is an acetylcholine vesicular transport system inhibitor. (+)-Vesamicol blocks acetylcholine storage and uptake by synaptic vesicles, reducing transmitter availability for neuromuscular junction release. (+)-Vesamicol acts as a neuromuscular blocking agent, producing frequency-dependent neuromuscular block in rat hemidiaphragm preparations .
    (+)-Vesamicol

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