CAS 125164-55-8
:Kaur-16-en-15-one,11-(acetyloxy)-13,18-dihydroxy-, (4a,11b)- (9CI)
Description:
Kaur-16-en-15-one, 11-(acetyloxy)-13,18-dihydroxy-, (4a,11b)-, with the CAS number 125164-55-8, is a chemical compound belonging to the class of terpenoids, specifically a type of kaurene. This compound features a complex steroid-like structure characterized by multiple hydroxyl (-OH) groups and an acetyloxy functional group, which contribute to its potential biological activity. The presence of these functional groups suggests that it may exhibit various pharmacological properties, including anti-inflammatory and anti-cancer effects, although specific biological activities would depend on further empirical studies. The stereochemistry indicated by the (4a,11b) designation suggests specific spatial arrangements of atoms, which can significantly influence the compound's reactivity and interaction with biological targets. Kaur-16-en-15-one derivatives are often studied for their roles in plant physiology and potential therapeutic applications, making them of interest in both natural product chemistry and medicinal chemistry.
Formula:C22H32O5
Synonyms:- 1H-2,10a-Ethanophenanthrene,kaur-16-en-15-one deriv.
- (-)-Rosthornin A
- Isodopharicin C
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Found 5 products.
Kaur-16-en-15-one, 11-(acetyloxy)-13,18-dihydroxy-, (4α,11β)-
CAS:Formula:C22H32O5Purity:98.5%Molecular weight:376.4865Rosthornin A
CAS:<p>Rosthornin A is a kind of natural product derived from the herbs of Rabdosia rosthornii.</p>Formula:C22H32O5Purity:98.00%Color and Shape:SolidMolecular weight:376.49Rosthornin A
CAS:<p>Rosthornin A is a C17-epoxy steroidal alkaloid, which is an isolated compound derived from the plant genus *Fritillaria*. This family of plants is known for its diverse array of bioactive alkaloids. Rosthornin A's mode of action involves complex interactions at the molecular level, which can modulate various biological pathways, potentially impacting cell signaling and receptor-binding processes.</p>Formula:C22H32O5Purity:Min. 95%Molecular weight:376.5 g/mol





