
CAS 4984-99-0
:Amurine
Description:
Amurine, with the CAS number 4984-99-0, is a chemical compound that belongs to the class of alkaloids. It is primarily derived from certain plant sources, particularly those found in the Amur region, which is reflected in its name. Amurine is characterized by its complex molecular structure, which typically includes multiple functional groups that contribute to its biological activity. This compound has garnered interest in pharmacology due to its potential therapeutic properties, including anti-inflammatory and analgesic effects. Additionally, amurine may exhibit interactions with various biological targets, making it a subject of research in medicinal chemistry. Its solubility, stability, and reactivity can vary depending on the specific conditions and solvents used. As with many alkaloids, safety and toxicity profiles are important considerations in its application and handling. Overall, amurine represents a fascinating area of study within natural product chemistry, with ongoing research aimed at elucidating its full range of biological activities and potential applications.
Formula:C19H19NO4
InChI:InChI=1S/C19H19NO4/c1-20-4-3-19-9-18(22-2)15(21)7-13(19)14(20)5-11-6-16-17(8-12(11)19)24-10-23-16/h6-9,14H,3-5,10H2,1-2H3/t14-,19-/m1/s1
InChI key:InChIKey=HTAGIZQYGRLQQX-AUUYWEPGSA-N
SMILES:O(C)C1=C[C@]23C=4C(C[C@](C2=CC1=O)(N(C)CC3)[H])=CC5=C(C4)OCO5
Synonyms:- Amurine
- Morphinan-7-one, 5,6,8,14-tetradehydro-6-methoxy-17-methyl-2,3-[methylenebis(oxy)]-
- Morphinan-7-one, 5,6,8,14-tetradehydro-6-methoxy-17-methyl-2,3-(methylenedioxy)-
- Amurin
- 5,6,8,14-Tetradehydro-6-methoxy-17-methyl-2,3-[methylenebis(oxy)]morphinan-7-one
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Found 2 products.
Amurine
CAS:<p>Amurine (C09334) is an alkaloid isolated from P. stylatum with potential antibacterial activity.</p>Formula:C19H19NO4Purity:98%Color and Shape:SolidMolecular weight:325.36Amurine
CAS:Controlled Product<p>Amurine is a biochemical compound derived from a robust plant source, specifically engineered for scientific applications. Its mode of action involves intricate interactions with cellular pathways, which are pivotal in facilitating advanced research in molecular biology. Amurine has been meticulously developed to target specific biochemical processes, allowing for precise manipulation and study of cellular mechanisms.</p>Formula:C19H19NO4Purity:Min. 95%Molecular weight:325.4 g/mol

