[Phytochemical evaluation of essential oils, medicinal plants and their preparations]. 1998

E Lemberkovics, and A Kéry, and G Marczal, and B Simándi, and E Szöke
Semmelweis Orvostudományi Egyetem, Gyógynövény és Drogismereti Intézet, Budapest.

A surway is presented on the authors' work in the field of volatile oil research. The gas chromatographic method previously used for analysis of essential oils was transformed to capillary gas chromatographic conditions. The method is also suitable for separation of compound-pairs frequently occurring in essential oils (peppermint, rosemary, lavender, sage, clary sage, thyme oils). Beside the gas chromatographic analysis of essential oils, which was necessary for their standardization and qualification, the influence of different extraction methods and some biological facts e.g. the ontogenesis on the change of essential oil composition are also discussed. It has been established that the water steam distillation from acidic medium can be more advantageous than the traditional one, if the volatile terpene derivatives were bound in form of glycosides or dimeric quajazolide lactons were present in plant (oregano, Sideritis, wormwood oils). Comparing the composition of essential oil obtained by water steam distillation and supercritical fluid extraction (SFE) it was found that the SFE fractions are richer in ester constituents because the possibility of hydrolysis is reduced, and the oils are more valuable than the classic oils. On the other hand, when the transformation processes are important (chamomile), the distillation is the better method. The change of essential oil composition of Ocimum basilicum L. and Anthriscus cerefolium L. was also studied during the vegetation period. It has been established that in budding and early flowering stages the basil oil was rich in monoterpenes; the quantity of sesquiterpenes and phenylpropane derivatives increased only in later stadiums. Finally the extraction and analytical processes are discussed which are used for standardization of complex plant preparations which contained essential oil as active agent and represented various medicinal forms.

UI MeSH Term Description Entries
D009822 Oils, Volatile Oils which evaporate readily. The volatile oils occur in aromatic plants, to which they give odor and other characteristics. Most volatile oils consist of a mixture of two or more TERPENES or of a mixture of an eleoptene (the more volatile constituent of a volatile oil) with a stearopten (the more solid constituent). The synonym essential oils refers to the essence of a plant, as its perfume or scent, and not to its indispensability. Essential Oil,Oil, Essential,Oil, Volatile,Oils, Essential,Volatile Oil,Essential Oils,Volatile Oils
D010936 Plant Extracts Concentrated pharmaceutical preparations of plants obtained by removing active constituents with a suitable solvent, which is evaporated away, and adjusting the residue to a prescribed standard. Herbal Medicines,Plant Extract,Extract, Plant,Extracts, Plant,Medicines, Herbal
D010946 Plants, Medicinal Plants whose roots, leaves, seeds, bark, or other constituent parts possess therapeutic, tonic, purgative, curative or other pharmacologic attributes, when administered to man or animals. Herbs, Medicinal,Medicinal Herbs,Healing Plants,Medicinal Plants,Pharmaceutical Plants,Healing Plant,Herb, Medicinal,Medicinal Herb,Medicinal Plant,Pharmaceutical Plant,Plant, Healing,Plant, Medicinal,Plant, Pharmaceutical,Plants, Healing,Plants, Pharmaceutical
D002849 Chromatography, Gas Fractionation of a vaporized sample as a consequence of partition between a mobile gaseous phase and a stationary phase held in a column. Two types are gas-solid chromatography, where the fixed phase is a solid, and gas-liquid, in which the stationary phase is a nonvolatile liquid supported on an inert solid matrix. Chromatography, Gas-Liquid,Gas Chromatography,Chromatographies, Gas,Chromatographies, Gas-Liquid,Chromatography, Gas Liquid,Gas Chromatographies,Gas-Liquid Chromatographies,Gas-Liquid Chromatography
D005419 Flavonoids A group of phenyl benzopyrans named for having structures like FLAVONES. 2-Phenyl-Benzopyran,2-Phenyl-Chromene,Bioflavonoid,Bioflavonoids,Flavonoid,2-Phenyl-Benzopyrans,2-Phenyl-Chromenes,2 Phenyl Benzopyran,2 Phenyl Benzopyrans,2 Phenyl Chromene,2 Phenyl Chromenes
D019684 Magnoliopsida A class of vascular plants which produce flowers and seeds. They include monocotyledons, dicotyledons, and about 80% of all known plant species. Angiosperms,Angiosperma,Angiospermae,Arecidae,Asteridae,Caryophyllidae,Commelinidae,Dicotyledoneae,Dilleniidae,Flowering Plants,Hamamelidae,Hamamelididae,Icacinales,Liliatae,Liliidae,Liliopsida,Magnoliatae,Metteniusales,Oncothecales,Rosidae,Vahliales,Zingiberidae,Angiosperm,Flowering Plant,Icacinale,Metteniusale,Oncothecale,Plant, Flowering,Plants, Flowering,Vahliale
D020843 Chamomile Common name for several daisy-like plants (MATRICARIA; TRIPLEUROSPERMUM; ANTHEMIS; CHAMAEMELUM) native to Europe and Western Asia, now naturalized in the United States and Australia. Camomile,Chamomile Oil,Camomiles,Chamomile Oils,Chamomiles,Oil, Chamomile,Oils, Chamomile

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