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Supercritical fluid extraction and convergence chromatographic determination of parthenolide in Tanacetum parthenium L.: Experimental design,modeling and optimization
Affiliation:1. FSRC ‘Crystallography and Photonics’, Russian Academy of Sciences, 119421 Moscow, Russian Federation;2. N. D. Zelinsky Institute of Organic Chemistry, Russian Academy of Sciences, 119991 Moscow, Russian Federation;3. D. I. Mendeleev University of Chemical Technology of Russia, 125047 Moscow, Russian Federation;1. Experimental Physics 5, University of Würzburg, Am Hubland, 97074 Würzburg, Germany;2. Scion, Te Papa Tipu Innovation Park, 49 Sala Street, Rotorua 3046, New Zealand;3. CSIRO Agriculture Flagship, 306 Carmody Road, St Lucia, QLD 4067, Australia;4. Institute of Food, Nutrition & Human Health, Massey University Manawatu, Centennial Drive, Hokowhitu, Palmerston North 4410, New Zealand;5. Chemipreneur Limited, 11 Awatea Terrace, Rotorua 3010, New Zealand
Abstract:Feverfew (Tanacetum parthenium L., Asteraceae) is a perennial medicinal plant which has been used to alleviate the symptoms of migraines, headaches and rheumatoid arthritis. The herb contains various potentially active constituents such as sesquiterpene-γ-lactones, flavonoids and volatile oil. The main sesquiterpene-lactone in feverfew is parthenolide which is considered to be responsible for the therapeutical effects. Supercritical CO2 extraction was carried out at different pressures (10–30 MPa), temperatures (40–80 °C) and co-solvent contents (0–10% ethanol) in order to study the extraction yield and the parthenolide recovery of the extracts. Leaves collected before and during flowering and flower heads were investigated. A factorial experiment using a full 33 design was followed during the experiments and response surface methodology was implemented to analyze the influence of the variables and optimize the extraction. The critical values of parthenolide content were found to be 7% EtOH, 22 MPa and 64 °C in case of all three samples. It was determined, that the optimal conditions of the extraction, where the maximum parthenolide content and extract yield can be reached, do not coincide. The highest yield of parthenolide was obtained in the flower heads (0.604 wt.%).
Keywords:Supercritical fluid extraction  Experimental design  Response surface methodology  Convergence chromatography
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