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Original Articles

Comparative analysis of α- and β-thujone in the essential oil and supercritical CO2 extract of sage (Salvia officinalis L.)

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Pages 85-90 | Received 20 Jun 2013, Accepted 14 Oct 2013, Published online: 29 Nov 2013

References

  • M. Ben Farhat, M.J. Jordan, R. Chaouech-Hamada, A. Landoulsi and J.A. Sotomayor, Variations in essential oil, phenolic compounds, and antioxidant activity of Tunisian cultivated Salvia officinalis L. J. Agric. Food Chem., 57, 10349–10356 (2009).
  • S. Maric, M. Maksimovic and M. Milos, The impact of the locality altitudes and stages of development on the volatile constituents of Salvia officinalis L. from Bosnia and Herzegovina. J. Essent. Oil Res., 18, 178–180 (2006).
  • P.C. Santos-Gomes and M. Fernandes-Ferreira, Essential oils produced by in vitro shoots of sage (Salvia officinalis L.). J. Agric. Food Chem., 51, 2260–2266 (2003).
  • C.F. Lima, F. Carvalho, E. Fernandes, M.L. Bastos, P.C. Santos-Gomes, M. Fernandes-Ferreira and C. Pereira-Wilson, Evaluation of toxic/protective effects of the essential oil of Salvia officinalis on freshly isolated rat hepatocytes. Toxicol. Vitro, 18, 457–465 (2004).
  • L.F. Rolim de Almeida, F. Frei, E. Mancini, L. De Martino and V. De Feo, Phytotoxic activities of Mediterranean essential oils. Molecules, 15, 4309–4323 (2010).
  • B. Vukovic-Gacic, S. Nikcevic, T. Beric-Bjedov, J. Knezevic-Vukcevic and D. Simic, Antimutagenic effect of essential oil of sage (Salvia officinalis L.) and its monoterpenes against UV-induced mutations in Escherichia coli and Saccharomyces cerevisiae. Food Chem. Toxicol., 44, 1730–1738 (2006).
  • A.E. Edris, L. Jirovetz, G. Buchbauer, Z. Denkova, A. Stoyanova and A. Slavchev, Chemical composition, antimicrobial activities and olfactive evaluation of a Salvia officinalis L. (Sage) essential oil from Egypt. J. Essent. Oil Res., 19, 186–189 (2007).
  • B. Bozin, N. Mlmica-Dukic, I. Samojlik and E. Jovin, Antimicrobial and antioxidant properties of rosemary and sage (Rosmarinus officinalis L. and Salvia officinalis L., Lamiaceae) essential oils. J. Agric. Food Chem., 55, 7879–7885 (2007).
  • M. Bouaziz, T. Yangui, S. Sayadi and A. Dhouib, Disinfectant properties of essential oils from Salvia officinalis L. cultivated in Tunisia. Food Chem. Toxicol., 47, 2755–2760 (2009).
  • M.R. Loizzo, A.M. Saab, R. Tundis, G.A. Statti, F. Menichini, I. Lampronti, R. Gambari, J. Cinatl and H.W. Doerr, Phytochemical analysis and in vitro antiviral activities of the essential oils of seven Lebanon species. Chem. Biodiversity, 5, 461–470 (2008).
  • E.A. Hayouni, I. Chraief, M. Abedrabba, M. Bouix, J.Y. Leveau, H. Mohammed and M. Hamdi, Tunisian Salvia officinalis L. and Schinus molle L. essential oils: Their chemical compositions and their preservative effects against Salmonella inoculated in minced beef meat. Int. J. Food Microbiol., 125, 242–251 (2008).
  • D. Altindaland N. Altindal, The effects of sage volatile oil (Salvia officinalis) and Turkish oregano volatile oil (Origanum onites) on stored cowpea (Vigna nisensis L.) seed. J. Med. Plants Res., 5, 5017–5020 (2011).
  • F.R. Carrasco, G. Schmidt, A.L. Romero, J.L. Sartoretto, S.M. Caparroz-Assef, C.A. Bersani-Amado and R.K. Nakamura, Cuman, Immunomodulatory activity of Zingiber officinale Roscoe. Salvia officinalis L. and Syzygium aromaticum L. essential oils: Evidence for humor- and cell-mediated responses. J. Pharm. Pharmacol., 61, 961–967 (2009).
  • I.H. Sellami, I.B. Rebey, J. Sriti F.Z. Rahali, F. Limam and B. Marzouk, Drying sage (Salvia officinalis L.) plants and its effects on content, chemical composition, and radical scavenging activity of the essential oil. Food Bioproc. Technol., 5, 2978–2989 (2012).
  • G. Koliopoulos, D. Pitarokili, E. Kioulos, A. Michaelakis and O. Tzakou, Chemical composition and larvicidal evaluation of Mentha, Salvia, and Melissa essential oils against the West Nile virus mosquito Culex pipiens. Parasitol. Res., 107, 327–335 (2010).
  • S. Sertel, T. Eichhorn, P. Plinkert and T. Efferth, Anticancer activity of Salvia officinalis essential oil against HNSCC cell line (UMSCC1). Hno, 59, 1203–1208 (2011).
  • R. Länger, C. Mechtler and J. Jurenitsch, Composition of the essential oils of commercial samples of Salvia officinalis L and S. fruticosa Miller: A comparison of oils obtained by extraction and steam distillation. Phytochem. Anal., 7, 289–293 (1996).
  • J. Richter and I. Schellenberg, Comparison of different extraction methods for the determination of essential oils and related compounds from aromatic plants and optimization of solid-phase microextraction/gas chromatography. Anal. Bioanal. Chem., 387, 2207–2217 (2007).
  • C. Bicchi and M.E. Maffei, The plant volatilome: methods of analysis. In: High throughput phenotyping in plants: Methods and protocols. Edit. J. Normanly, pp. 289–310, Humana Press, Totowa, NJ(2012).
  • C. Bicchi, C. Cagliero and P. Rubiolo, New trends in the analysis of the volatile fraction of matrices of vegetable origin: A short overview. A review. Flavour Fragr. J., 26, 321–325 (2011).
  • H. Kamali, M.R. Jalilvand and N. Aminimoghadamfarouj, Pressurized fluid extraction of essential oil from Lavandula hybrida using a modified supercritical fluid extractor and a central composite design for optimization. J. Sep. Sci., 35, 1479–1485 (2012).
  • A. Occhipinti, A. Capuzzo, S. Bossi, C. Milanesiand M.E. Maffei,Comparative analysis of supercritical CO2 extracts and essential oils from an Ocimum basilicum chemotype particularly rich in T-cadinol. J. Essent. Oil Res., 4, 272–277 (2013).
  • A. Capuzzo, M.E. Maffei and A. Occhipinti, Supercritical fluid extraction of plant flavors and fragrances. Molecules, 18, 7194–7238 (2013).
  • E. Dauksas, P.R. Venskutonis, V. Povilaityte and B. Sivik, Rapid screening of antioxidant activity of sage (Salvia officinalis L.) extracts obtained by supercritical carbon dioxide at different extraction conditions. Nahrung-Food, 45, 338–341 (2001).
  • J. Ivanovic, S. Dilas, M. Jadranin, V. Vajs, N. Babovic, S. Petrovicand I. Zizovic, Supercritical carbon dioxide extraction of antioxidants from rosemary (Rosmarinus officinalis L.) and sage (Salvia officinalis L.). J. Serbian Chem. Soc., 74, 717–732 (2009).
  • S. Aleksovski and H. Sovova, Supercritical CO2 extraction of Salvia officinalis L. J. Supercrit. Fluids, 40, 239–245 (2007).
  • S. Glisic, J. Ivanovic, M. Ristic and D. Skala, Extraction of sage (Salvia officinalis L.) by supercritical CO2: Kinetic data, chemical composition and selectivity of diterpenes. J. Supercrit. Fluids, 52, 62–70 (2010).
  • T. Fornari, G. Vicente, E. Vazquez, M.R. Garcia-Risco and G. Reglero, Isolation of essential oil from different plants and herbs by supercritical fluid extraction. J. Chromatogr. A, 1250, 34–48 (2012).
  • D.W. Lachenmeier, S.G. Walch, S.A. Padosch and L.U. Kroner, Absinthe – A review. Crit. Rev. Food Sci. Nutrit., 46, 365–377 (2006).
  • D.W. Lachenmeier and M. Uebelacker, Risk assessment of thujone in foods and medicines containing sage and wormwood – Evidence for a need of regulatory changes? Regul. Toxicol. Pharmacol., 58, 437–443 (2010).
  • EMA, Community Herbal Monograph on Salvia officinalis L., folium. European Medicines Agency, London (2009).
  • R.P. Adams, Identification of Essential Oil Components by Gas Chromatography/Mass Spectrometry. Allured Publishing, Carol Stream, IL (2007).
  • A. Raal, A. Orav and E. Arak, Composition of the essential oil of Salvia officinalis L. from various European countries. Nat. Prod. Res., 21, 406–411 (2007).
  • P.C. Santos-Gomes and M. Fernandes-Ferreira, Organ- and season-dependent variation in the essential oil composition of Salvia officinalis L. cultivated at two different sites. J. Agric. Food Chem., 49, 2908–2916 (2001).
  • L. Tedone, I. Bonaccorsi, P. Dugo, A. Cotroneo, G. Dugo and L. Mondello, Reliable identification and quantification of volatile components of sage essential oil using ultra HRGC. Nat. Prod. Comm., 6, 417–422 (2011).
  • G. Miguel, C. Cruz, M. Faleiro, M. Simoes, A. Figueiredo, J. Barroso and L. Pedro, Salvia officinalis L. essential oils: Effect of hydrodistillation time on the chemical composition, antioxidant and antimicrobial activities. Nat. Prod. Res., 25, 526–541 (2011).
  • M.A. Rather, B.A. Dar, K.A. Bhat, A.S. Shawl, M.A. Qurishi, M.Y. Dar and B.A. Ganai, Mono-sesquiterpenoid composition in the leaves and flowers of Salvia moorcroftiana Wall ex Benth. growing wild in Kashmir, India. J. Essent. Oil Res., 23, 21–25 (2011).
  • K.A. Khalid, Evaluation of Salvia officinalis L. essential oil under selenium treatments. J. Essent. Oil Res., 23, 57–60 (2011).
  • S.B. Glisic, M. Ristic and D.U. Skala, The combined extraction of sage (Salvia officinalis L.): Ultrasound followed by supercritical CO2 extraction. Ultrason. Sonochem., 18, 318–326 (2011).
  • B. Simandi, A. Kery, E. Lemberkovics, M. Oszagyan, E. Ronyai, I. Mathe, J. Fekete and E. Hethelyi, Supercritical fluid extraction of medicinal plants. High Press. Chem. Engin., 12, 357–362 (1996).
  • E. Reverchon, R. Taddeo and G. DellaPorta, Extraction of sage oil by supercritical CO2: Influence of some process parameters. J. Supercrit. Fluids, 8, 302–309 (1995).

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