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sandaracopimaric acid/pinheiro

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A high-throughput quantitative Nuclear Magnetic Resonance 1H-NMR method was developed and applied to screen the quantity of the diterpenic resin acids in the heartwood of black pine, due to the renewed scientific interest in their medicinal properties and use in various diseases

[Isolation and identification of diterpenoids from Pinus koraiensis].

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OBJECTIVE To study chemical compounds from Pinus koraiensis. METHODS The constituents were isolated by chromatographic method and the structures were identified on the basis of spectral alanlysis. RESULTS Eight compounds were identified as 8 (14)-podocarpen-13-on-18-oic acid (1),

Genetic and correlation analysis of oleoresin chemical components in slash pine.

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This is the first comprehensive study of the genetic analysis of the majority of oleoresin components of slash pine (Pinus elliottii). Pine oleoresin, the resin secreted from the pine tree, is a raw material widely used in industrial products. The objective of this study was to explore the genetic
Cytochrome P450 enzymes of the CYP720B subfamily play a central role in the biosynthesis of diterpene resin acids (DRAs), which are a major component of the conifer oleoresin defense system. CYP720Bs exist in families of up to a dozen different members in conifer genomes and fall into four different

Potential antitumor-promoting diterpenes from the cones of Pinus luchuensis.

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A new nor-labdane-type diterpene, 15-nor-labda-8(17),12E-dien-13,19-dienoic acid (1), along with five known diterpenes, 15-nor-14-oxolabda-8(17),12E-dien-19-oic acid (2), trans-communic acid (3), sandaracopimaric acid (4), dehydroabietic acid (5), and abieta-8,11,13-triene-15,18-diol (6), was
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