1991
DOI: 10.1007/bf00629750
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Chemical composition of the rhizomes of the Rhodiola rosea by the HPLC method

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Cited by 9 publications
(13 citation statements)
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“…rosea cultivated in the Moscow, Leningrad, and Samara regions [5,36,38] contains practically the same set of substances which is characteristic of wildgrowing plants [5,59,[65][66][67]; the relative contents of the major biologically active components was also virtually iden- tical in the materials of the two types. There was a difference in the absolute content of these components, because cultivated plants contain a smaller amount of extracted substances.…”
Section: Standardization Methodsmentioning
confidence: 99%
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“…rosea cultivated in the Moscow, Leningrad, and Samara regions [5,36,38] contains practically the same set of substances which is characteristic of wildgrowing plants [5,59,[65][66][67]; the relative contents of the major biologically active components was also virtually iden- tical in the materials of the two types. There was a difference in the absolute content of these components, because cultivated plants contain a smaller amount of extracted substances.…”
Section: Standardization Methodsmentioning
confidence: 99%
“…rosea, developed at the Institute of Medicinal and Aromatic Plants (VILAR Corporation), are based on the results obtained using TLC, HPLC, and spectrophotometric techniques [40,62,[65][66][67][68]. The methods employ SSS "Rosavin" prepared using a special technology developed at the VILAR Corporation, included in a project of the corresponding Pharmacopoeial Issue.…”
Section: Standardization Methodsmentioning
confidence: 99%
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“…Processes of separation and purification of aromatic acids are extensively studied both by the conventional methods of liquid column chromatography [1][2][3], ion-exchange chromatography [4,5], and high-performance liquid chromatography [6][7][8][9], and by the non-classical affinity chromatography techniques using affinity-type adsorbents (ATA) [10][11][12]. For example, Meyerhaff et al [10] immobilized tetraphenylporphyrin and its complexes with metal ions on aminopropyl silica gel and successfully used this ATA for the separation of aromatic acids in various chromatographic regimes (anion exchange, etc.).…”
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confidence: 99%