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TargetMol | Tags Natural Product Categories

Samanea

TargetMol offers a curated selection of compounds derived from the Samanea genus and maintains a collection of over 25,000 high-purity natural products and natural product monomer reference standards (sourced from plants, microorganisms, marine organisms, and animals). Utilizing a refined classification system that covers multi-dimensional information such as genus, family, biological activity, and structural types, our products feature clear source information and standardized data, making them suitable for reference standard research, high-throughput screening, virtual screening, and drug discovery studies.

  • Danshenxinkun A
    TN155065907-75-7
    Danshenxinkun A is a natural product isolated from Salvia miltiorrhiza (Tanshen) exhibiting neuraminidase inhibitory activity with an IC50 of 39.5 mg/L.
    • $179
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  • Dihydroisotanshinone II
    TN3851260397-58-8
    Dihydroisotanshinone II is a natural diterpenoid compound isolated from the roots of Salvia miltiorrhiza and can be used in life science research.
    • $997
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  • (Rac)-Salvianic acid A
    (Rac)-Tanshinol, (Rac)-Danshensu
    T3982523028-17-3
    (Rac)-Salvianic acid A is the racemic form of Salvianic acid A, an orally active phenolic compound. (Rac)-Salvianic acid A activates the Nrf2/HO-1 signaling pathway while inhibiting the NF-κB pathway, exhibiting potential for antioxidant, anti-apoptotic, and anti-pulmonary inflammatory effects. (Rac)-Salvianic acid A is suitable for research in COVID-19, cardiovascular, and cerebrovascular diseases.
    • $30
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  • Methyl tanshinonate
    TMA039418887-19-9
    Methyl tanshinonate is a tanshinone that can be isolated from Salvia miltiorrhiza Bunge (Lamiaceae). Methyl tanshinonate is a potent inhibitor of Mpro enzyme in SARS-CoV (IC50 = 21.1 µM). Methyl tanshinonate is therefore used in viral protease research systems to investigate coronavirus main protease inhibition, antiviral target validation, and structure-based drug screening models for SARS-CoV-related enzymatic systems.
    • $540
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