Search results for "neoclerodane"

showing 3 items of 3 documents

Advances on the chemistry of furano-diterpenoids from Teucrium genus

2005

This paper updates the previous reviews, reporting the results published in the last six years on the chemistry of these diterpenoids.

PharmacologyLamiaceaebiologyStereochemistryChemistryOrganic ChemistryneoclerodanediterpenoidGeneral Medicinefuroclerodanebiology.organism_classificationAnalytical ChemistryTeucriumTeucriumTerpeneGenusBotanyLamiaceae
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Scuteparvin, a new neoclerodane diterpenoid from Scutellaria parvula

2004

Abstract The diterpenoid fraction occurring in the acetone extract of the aerial parts of Scutellaria parvula has been investigated. Only one neoclerodane diterpenoid, scuteparvin, was isolated and its structure elucidated as 4α,18-epoxy-6α- trans -cinnamoyloxy- neo clerod-13-en-15,16-olide, a new natural product. Scuteparvin is quite similar to the already known ajugarin V from Ajuga remota , the only difference being the occurrence of a trans -cinnamoyl ester system instead of an acetate on the 6α-OH group. This finding confirms that the genera Scutellaria and Ajuga are closely related taxonomically.

biologyStereochemistryneoclerodaneScutellaria parvulabiology.organism_classificationBiochemistryditerpeneTerpenoidAjugalamiaceaeScutellaria parvulaBotanyScutellariaEcology Evolution Behavior and SystematicsBiochemical Systematics and Ecology
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Synthetic studies on neoclerodane diterpenes from Salvia splendens: oxidative modifications of ring A.

2011

Salvinorin A (1), a neoclerodane diterpene from the hallucinogenic mint Salvia divinorum, is the only known naturally occurring non-nitrogenous and specific κ-opioid agonist. Some oxidative modifications of the A ring in the congeners of 1 isolated from Salvia splendens salviarin, splenolide B, splendidin and in the non-natural 8-epi-salviarin gave new derivatives, some of which were tested as agonists at opioid receptors. However, none of these compounds were active. The presence of the C-18, C-19 lactone could be at the origin of the observed lack of binding affinity.

chemistry.chemical_classificationbiologyStereochemistryOrganic ChemistryPharmacognosySalviabiology.organism_classificationBiochemistryTerpenoidSalvinorin AArticleTerpenechemistry.chemical_compoundchemistryDrug DiscoverySalvia divinorumSalvia splendens. Opioid receptors. Neoclerodane diterpenes. Semisynthetic derivativesDiterpeneLactoneTetrahedron
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