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Results for "

cholinergic system-related diseases

" in MedChemExpress (MCE) Product Catalog:

3

Inhibitors & Agonists

3

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-N2183
    Baimaside
    3 Publications Verification

    Quercetin 3-O-sophoroside

    SARS-CoV Infection Neurological Disease
    Baimaside (Quercetin 3-O-sophoroside) is a flavonoid cholinergic function modulator that binds to SARS-CoV-2-related targets. Baimaside regulates the expression of cholinergic system-related proteins and acetylcholine levels, improves scopolamine-induced learning and memory impairment, protects hippocampal neurons, inhibits pollen protein fluorescence, and protects pollen DNA. Its biosynthesis is regulated by multiple enzymes. Baimaside is completely absorbed in rats, undergoes phase Ⅱ metabolism and gut microbiota decomposition, and inhibits the invasion and proliferation of SARS-CoV-2 and its variants, making it suitable for research related to Alzheimer's disease and COVID-19 .
    Baimaside
  • HY-N15736

    mAChR Neurological Disease
    Petiline is a steroidal alkaloid found in Petilium raddeanum, acting as a selective antagonist of M cholinergic receptors. Petiline exerts anticholinergic effects (e.g., reducing vagal influence on the heart) by competitively blocking M cholinergic receptors, and also has central excitatory, cardiotonic, and spasmolytic activities. Petiline is promising for research of cholinergic system-related diseases (e.g., arrhythmia, intestinal spasm) .
    Petiline
  • HY-N2183R

    Quercetin 3-O-sophoroside (Standard)

    Reference Standards SARS-CoV Others
    Baimaside (Standard) is the analytical standard of Baimaside. This product is intended for research and analytical applications. Baimaside (Quercetin 3-O-sophoroside) is a flavonoid cholinergic function modulator that binds to SARS-CoV-2-related targets. Baimaside regulates the expression of cholinergic system-related proteins and acetylcholine levels, improves scopolamine-induced learning and memory impairment, protects hippocampal neurons, inhibits pollen protein fluorescence, and protects pollen DNA. Its biosynthesis is regulated by multiple enzymes. Baimaside is completely absorbed in rats, undergoes phase Ⅱ metabolism and gut microbiota decomposition, and inhibits the invasion and proliferation of SARS-CoV-2 and its variants, making it suitable for research related to Alzheimer's disease and COVID-19 .
    Baimaside (Standard)

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