Cryptocarya chinensis
National Institutes of Health
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AimsEcological forest succession can be influenced by plant-plant interactions that exert contrasting effects on early- and late…
Competition and facilitation between tree individuals are two kinds of non-random processes influencing the structure and…
Bioassay-guided fractionation of the cytotoxic ethanol extract of Cryptocarya chinensis has led to the isolation of 11 compounds…
Four new flavanones, cryptoflavanones A–D (1–4, resp.), together with eight known compounds, were isolated from the leaves of…
Bioassay-guided fractionation led to the isolation of six new tetrahydroflavanones, cryptochinones A-F (1-6), from the neutral…
Seed limitation of desired indigenous species has constrained the succession of established plantations from an early…
Three new pavine N-oxide alkaloids, (-)-isocaryachine-N-oxide B, (+)-caryachine-N-oxide, (-)-caryachine-N-oxide, and a new…
Four new pavine alkaloids, (+)-eschscholtzidine-N-oxide (1), (-)-12-hydroxycrychine (2), (-)-12-hydroxy-O-methylcaryachine (3…
Investigation of the leaves of Cryptocarya chinensis resulted in the isolation of three new alkaloids, named (-)-isocaryachine-N…