Judzentiene Asta, Butkiene Rita, Budiene Jurga, Tomi Félix, Casanova Joseph
Center for Physical Sciences and Technology, Institute of Chemistry, A. Gostauto 9, LT- 01108 Vilnius, Lithuania.
Nat Prod Commun. 2012 Feb;7(2):227-30.
For the first time, the chemical composition of the seed essential oil of Rhododendron tomentosum was determined. Forty-seven compounds were identified, comprising 91.7% of the total oil. Palustrol (38.3%) and ledol (27.0%) were the predominant constituents. Some constituents, such as beta-pinene oxide, iso-menthyl acetate, nerolidyl acetate, cadalene and guaiazulene were characteristic only for the seeds and were identified for the first time in Rh. tomentosum oils. For comparison purposes, the essential oil isolated from the shoots of the same plant were analyzed [GC(FID) in combination with RIs, GC-MS and 13C NMR]. More than a half of the oil was comprised of ledol (36.5%) and palustrol (21.0%). Quantitative analysis of ascaridol, a heat-sensitive compound, was carried out by 13C NMR spectroscopy. Indeed, ascaridol undergoes partial thermal isomerization to iso-ascaridol during GC analyses.
首次测定了绒毛杜鹃种子精油的化学成分。共鉴定出47种化合物,占精油总量的91.7%。沼生芹醇(38.3%)和喇叭茶醇(27.0%)是主要成分。一些成分,如β-蒎烯氧化物、异戊酸薄荷酯、橙花叔醇乙酸酯、杜松烯和愈创木薁,仅在种子中具有特征性,且首次在绒毛杜鹃精油中被鉴定出来。为作比较,对同一植株嫩枝中分离得到的精油进行了分析[采用气相色谱(氢火焰离子化检测器)结合保留指数、气相色谱-质谱联用和13C核磁共振分析]。超过一半的精油由喇叭茶醇(36.5%)和沼生芹醇(21.0%)组成。对热敏化合物蛔蒿素进行了13C核磁共振光谱定量分析。实际上,蛔蒿素在气相色谱分析过程中会部分热异构化为异蛔蒿素。