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Original Articles

The Effect of Drying of the Composition of Volatile Organic Compounds in Rosmarinus officinalis, Laurus nobilis, Salvia officinalis and Thymus serpyllum. A HS-SPME-GC-MS Study

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Pages 1209-1223 | Received 29 Aug 2012, Accepted 21 Mar 2013, Published online: 20 Oct 2015

References

  • Cuvelier, M.E., Richard, H., and Berset, C. (1996). Antioxidative activity and phenolic composition of pilot-plant and commercial extracts of sage and rosemary. Journal of Americam Oil Chemical Society, 73: 645–665.
  • Daferera, D.J., Ziogas, B.N., and Polissiou, M.G. (2000). GC-MS Analysis of essential oils from some greek aromatic plants and their fungitoxicity on Penicillium digitatum. Journal of Agricultural and Food Chemistry, 48: 2576–2581.
  • Dorman, H.J.D., Peltoketo, A., Hiltunen, R., and Tikkanen, M.J. (2003). Characterisation of the antioxidant properties of de-odourised aqueous extracts from selected Lamiaceae herbs. Food Chemistry, 83: 255–262.
  • Nassu, R.T., Gonçalves, A.G., Pereira da Silva, M.A.A., and Beserra, F.J. (2003). Oxidative stability of fermented goat meat sausage with different levels of natural antioxidant. Meat Science, 63: 43–49.
  • Valero, M. and Salmerón, M.C. (2003). Antibacterial activity of 11 essential oils against Bacillus cereus in tyndallized carrot broth. International Journal of Food Microbiology, 85: 73–81.
  • Papachristos, D.P., Karamanoli, K.I., Stamopoulos, D.C., and Menkissoglu-Spiroudi, U. (2004). The relationship between the chemical composition of three essential oils and their insecticidal activity against Acanthoscelides obtectus (Say). Pest Management Science, 60: 514–520.
  • Wada, M., Kido, H., Ohyama, K., Kishikawa, N., Ohba, Y., Kuroda, N., and Nakashima, K. (2004). Evaluation of quenching effects of non-water-soluble and water-soluble rosemary extracts against active oxygen species by chemiluminescent assay. Food Chemistry, 87: 261–267.
  • Karamanoli, K., Menkissoglu-Spiroudi, U., Bosabalidis, A.M., Vokou, D., and Constantinidou, H.I.A. (2005). Bacterial colonization of the phyllosphere of nineteen plant species and antimicrobial activity of their leaf secondary metabolites against leaf associated bacteria. Chemoecology, 15: 59–67.
  • Gachkar, L., Yadagari, D., Bagher-Rezaei, M., Taghizadeh, M., Alipoor-Astaneh, S., and Rasooli, I. (2007). Chemical and biological characteristics of Cuminum cyminum and Rosmarinus officinalis essential oils. Food Chemistry, 102: 898–904.
  • Yesil Celiktas, O., Hames Kocabas, E.E., Bedir, E., Vardar Sukan, F., Ozek, T., and Baser K.H.C. (2007). Antimicrobial activities of methanol extracts and essential oils of Rosmarinus officinalis, depending on location and seasonal variations. Food Chemistry, 100: 553–559.
  • Yesil Celiktas, O., Bedir, E., and Vardar Sukan, F. (2007). In vitro antioxidant activities of Rosmarinus officinalis extracts treated with supercritical carbon dioxide. Food Chemistry, 101: 1457–1464.
  • Orhan, I., Aslan, S., Kartal, M., Sener, B., and Hüsnü Can Baser, K. (2008). Inhibitory effect of Turkish Rosmarinus officinalis L. on acetylcholinesterase and butyrylcholinesterase enzymes. Food Chemistry, 108: 663–668.
  • Wang, W., Wu, N., Zu, Y.G., and Fu, Y.J. (2008). Antioxidative activity of Rosmarinus officinalis L. essential oil compared to its main components. Food Chemistry, 108: 1019–1022.
  • Okoh, O.O., Sadimenko, A.P., and Afolayan, A.J. (2010). Comparative evaluation of the anti-bacterial activities of the essential oils of Rosmarinus officinalis L. obtained by hydrodistillation and solvent free microwave extraction methods. Food Chemistry, 120: 308–312.
  • Pizzetti Benincá, J., Bastos Dalmarco, J., Pizzolatti, M.G., and Fröde, T.S. (2011). Analysis of the anti-inflammatory properties of Rosmarinus officinalis L. in mice. Food Chemistry, 124: 468–475.
  • Cui, L., Kim, M.O., Seo, J.H., Kim, I.S., Kim, N.Y., Lee, S.H., Park, J., Kim, J., and Lee, H. S. (2012). Abietane diterpenoids of Rosmarinus officinalis and their diacylglycerol acyltransferase-inhibitory activity. Food Chemistry, 132: 1775–1780.
  • Basile, A., Jimenez-Carmona, M.M., and Clifford, A.A. (1998). Extraction of Rosemary by superheated water. Journal of Agricurtural and Food Chemistry, 46: 5205–5209.
  • Rezzoug, S.A., Baghdadi, M.W., Louka, N., Boutekedjiret, C., and Allaf, K. (1998). Study of a new extraction process: controlled instantaneous decompression. Application to the extraction of essential oil from rosemary leaves. Flavour and Fragrance Journal, 13: 251–258.
  • Wang, H., Provan, G.J., and Helliwell, K. (2004). Determination of rosmarinic acid and caffeic acid in aromatic herbs by HPLC. Food Chemistry, 87: 307–311.
  • Moreno, S., Scheyer, T., Romano, C., and Vojnov, A. (2006). Antioxidant and antimicrobial activities of rosemary extracts linked to their polyphenol composition. Free Radical Research, 40: 223–231.
  • Roulier, G. (2005). Les huiles essentielles pour votre santé. Ed. Dangles, Esqualquens.
  • Borges, P., Pino, J., and Sánchez, E. (1992). Isolation and chemical characterization of laurel leaf oil. Die Nahrung, 36: 494–496.
  • Biondi, D., Cianci, P., Geraci, C., Ruberto, G., and Piattelli, M. (1993). Antimicrobial activity and chemical composition of essential oils from Sicilian aromatic plants. Flavour and Fragrance Journal, 8: 331–337.
  • Pino, J., Borges, P., and Roncal, E. (1993). The chemical composition of laurel leaf oil from various origins. Die Nahrung, 37: 592–595.
  • Hanson, W.I. and Hocking, G.M. (1957). Garden Sage. Economic Botany, 11: 64–74.
  • Dobrynin, V.N., Kolosov, M.N., Chernov, B.K., and Derbentseva, N.A. (1976). Antimicrobial substances of Salvia officinalis. Khimiya Prirodnykh Soedinenii, 5: 686–687.
  • Hitokoto, H., Morozumi, S., Wauke, T., Sakai, S., and Kurata, H. (1980). Inhibitory effects of spices on growth and toxin production of toxigenic fungi. Applied and Environmental Micro-biology, 39: 818–822.
  • Watanabe, M., Kobayashi, Y., Ogihara, J., Kato, J., and Oishi, I.K. (2000). HIV-1 Reverse Transcriptase-Inhibitory Compound in Salvia officinalis. Food Science and Technology Resarch, 6: 216–220.
  • Askun, T., Baser, K.H.C., Tümen, G., and Kürkçüoglu, M. (2010). Characterization of essential oils of some Salvia species and their antimycobacterial activities. Turkish Journal of Biology, 34: 89–95.
  • Tada, M., Okuno, K., Chiba, K., Ohnishi, E., and Yoshii, T. (1994). Antiviral diterpenes from Salvia officinalis. Phytochemistry, 35: 539–541.
  • Sivropoulou, A., Nikolaou, C., Papanikolaou, E., Kokkini, S., Lanaras, T., and Arsenakis, M. (1997). Antimicrobial, Cytotoxic, and Antiviral Activities of Salvia fructicosa Essential Oil. Journal of Agricultural and Food Chemistry, 45: 3197–3201.
  • Mlejová, V., Pavlíková, P., Dobiáš, P., Adam, M., and Ventura, K. (2010). Aplikace mikro-extrakce tuhou fází pro analýzu bylinných silic, Chemicke Listy, 104: 166–171.
  • Radulescu, V., Chiliment, S., and Oprea, E. (2004). Capillary gas chromatography - mass spectrometry of volatile and semi-volatile compounds of Salvia officinalis. Journal of Chromatography A, 1027: 121–126.
  • Venskutonis, P.R. (1997). Effect of drying on the volatile constituents of thyme (Thymus vulgaris L.) and sage (Salvia officinalis L.). Food Chemistry, 59: 219–227.
  • Senatore, F.J. (1996). Influence of harvesting time on yield and composition of the essential oil of a thyme (Thymus pulegoides L.) growing wild in Campania (southern Italy). Journal of Agricultural and Food Chemistry, 44: 1327–1332.
  • Lee, S.J., Umano, K., Shibamoto T., and Lee, K.G. (2005). Identification of volatile components in basil (Ocimum basilicum L.) and thyme leaves (Thymus vulgaris L.) and their antioxidant properties. Food Chemistry, 91: 131–137.
  • Granger, R. and Passet, J. (1973). Thymus vulgaris spontané de France: races chimiques et chemotaxonomie. Phytochemistry, 12: 1683–1691.
  • Adzet, T., Granger, R., Passet, J., and San Martin, R. (1977). Le polymorphisme chimique dans le génère Thymus: sa signification taxonomique. Biochemical Systematics and Ecology, 5: 269–272.
  • Piccaglia, R. and Marotti, M. (1993). Characterization of several aromatic plants grown in northern Italy. Flavour and Fragrrance Journal, 8: 115–122.
  • Diaz-Maroto, M.C., Diaz-Maroto Hidalgo, I.J., Sánchez-Palomo, E., and Pérez-Coello, M. S. (2005). Volatile components and key odorants of Fennel (Foeniculum vulgare Mill.) and Thyme (Thymus vulgaris L.) oil extracts obtained by simultaneous distillation - extraction and supercritical fluid extraction. Journal of Agricultural and Food Chemistry, 53: 5385–5389.
  • Hashemi, P., Abolghasemi, M.M., Hassanvand, H., and Ahmadi, S. (2010). Headspace solvent microextraction of volatile components of Thymus daenensis. Journal of Essential Oil Research, 22: 365–368.
  • Kardani, F., Daneshfar, A., Sahrae, R., and Ghaedi, M. (2011). Application of coacervative microextraction for extraction of volatile compounds in thymus essential oil and fruit juices by gas chromatography with flame ionization detection. Journal of Essential Oil Research, 23: 61–69.
  • D'Auria, M., Mauriello, G., Marino, R., and Racioppi, R. (2005). Composition of volatile fractions from Thymus, Origanum, Lavandula and Acinos species. Journal of Essential Oil Bearing Plants, 8: 36–51.
  • Diaz-Maroto, M.C., Pérez-Coello, M.S., and Cabezudo, M.D. (2002). Effect of drying method on the volatiles in bay leaf (Laurus nobilis L.). Journal of Agricultural and Food Chemistry, 50: 4520–4524.
  • Oh, S.Y., Ko, J.W., Jeong, S.Y. and Hong, J. (2008). Application and exploration of fast gas chromatography-surface acoustic wave sensor to the analysis of thymus species. Journal of Chromatography A, 1205: 117–127.
  • Szumny, A., Figiel, A., Gutiérrez-Ortíz, A., Carbonell-Barrachina, A.A. (2010). Composition of rosemary essential oil (Rosmarinus officinalis) as affected by drying method. Journal of Food Engineering, 97: 253–260.
  • Kandi, M.N.H. and Sefidkon, F. (2011). The influence of drying methods on essential oil content and composition of Laurus nobilis L. Journal of Essential Oil-Bearing Plants, 14: 302–308.
  • Sellami, I.H., Wannes, W.A., Bettaieb, I., Berrima, S., Chahed, T., Marzouk, B. and Limam, F. (2011). Qualitative and quantitative changes in the essential oil of Laurus nobilis L. leaves as affected by different drying methods. Food Chemistry, 126: 691–697.
  • Bentivenga, G., D'Auria, M., De Luca, E., De Bona, A. and Mauriello, G. (2001). The use of SPME-GC-MS in the analysis of flavor of virgin olive oil. Rivista Italiana delle Sostanze Grasse, 78: 157–162.
  • Bentivenga, G., D'Auria, M., De Bona, A. and Mauriello, G. (2002). On the flavor of virgin olive oil. Rivista Italiana delle Sostanze Grasse, 78: 101–105.
  • D'Auria, M., Mauriello, G. and Rana, G.L. (2004). Volatile organic compounds from saffron. Flavour and Fragrance Journal, 19: 17–23.
  • Bentivenga, G., D'Auria, M., Mauriello, G., Racioppi, R. and Viggiani, L. (2004). Characterization of virgin olive oils from Basilicata by using 1H-NMR and SPME-GC-MS. Rivista Italiana delle Sostanze Grasse, 81: 86–89.
  • Mauriello, G., Marino, R., D'Auria, M., Cerone, G. and Rana, G.L. (2004). Determination of volatile organic compounds from truffles via SPME-GC-MS. Journal of Chromatographic Science, 42: 299–305.
  • Bentivenga, G., D'Auria, M., Fedeli, P., Mauriello, G. and Racioppi, R. (2004). SPME-GC-MS analysis of volatile organic compounds in honey from Basilicata. Evidence for the presence of pollutants from anthropogenic activities. International Journal of Food Science and Technology, 39: 1079–1086.
  • D'Auria, M., Mauriello, G. and Racioppi, R. (2004). SPME-GC-MS analysis of horseradish (Armoracia rusticana). Italian Journal of Food Science 16: 487–504.
  • D'Auria, M., Mauriello, G., Marino, R. and Racioppi, R. (2005). Composition of volatile fraction from Thymus, Origanum, Lavandula and Acinos species. Journal of Essential Oil Bearing Plants 8: 36–51.
  • D'Auria, M., Mauriello, G., Racioppi, R. and Rana, G.L. (2006). Use of SPME-GC-MS in the study of time evolution of the constituents of saffron aroma: modifications of the composition during storage. Journal of Chromatographic Science, 44: 18–21.
  • D'Auria, M., Racioppi, R. and Velluzzi, V. (2008). A comparison of results obtained using liquid injection and headspace solid-phase microextraction for crude oil analysis by GC with mass spectrometer detection. Journal of Chromatographic Science, 46: 332–338.
  • D'Auria, M., Racioppi, R. and Velluzzi, V. (2008). Photodegradation of crude oil: liquid injection and headspace solid-phase microextraction for crude oil analysis by gas chromatography with mass spectrometry detector. Journal of Chromatographic Science, 46: 339–344.
  • D'Auria, M., Emanuele, L., Racioppi, R. and Velluzzi, V. (2009). Photochemical degradation of crude oil: comparison between direct irradiation, photocatalysis, and photocatalysis on zeolite. Journal of Hazardous Materials, 164: 32–38.
  • Mauriello, G., Capece, A., D'Auria, M., Garde-Cerdán, T. and Romano, P. (2009). SPME-GC method as a tool to differenziate VOC profiles in Saccharomyces cerevisiae wine yeasts. Food Microbiology, 26: 246–252.
  • D'Auria, M., Emanuele, L., Racioppi, R. and Velluzzi, V. (2009). Photodegradation of crude oil on solid support. Journal of Chromatographic Science, 47: 263–271.
  • Cellamare, L., D'Auria, M., Emanuele, L. and Racioppi, R. (2009). The effect of light on the composition of some volatile compounds in wine: an HS-SPME-GC-MS study. International Journal of Food Science and Technology, 44: 2377–2384.
  • D'Auria, M., Rana, G.L., Racioppi, R. and Laurita, A. (2012). Studies on volatile organic compounds of Tuber borchii and T. asa-foetida. Journal of Chromatographic Science, 50: 775–778.
  • D'Auria, M., Racioppi, R. and Rana, G.L. (2013). Volatile organic compounds of Schenella pityophilus. Natural Products Research 27: 41–44.
  • Acquaviva, V., D'Auria, M. and Racioppi, R. (2014). Changes in aliphatic ester composition in white wines during exposition to light. An HS-SPME-GC-MS study. Journal of Wine Research, 25: 63–74.
  • Frisch, M.J., Trucks, G.W., Schlegel, H.B., Scuseria, G.E., Robb, M.A., Cheeseman, J.R., Scalmani, G., Barone, V., Mennucci, B., Petersson, G.A., Nakatsuji, H., Caricato, M., Li, X., Hratchian, H.P., Izmaylov, A.F., Bloino, J., Zheng, G., Sonnenberg, J.L., Hada, M., Ehara, M., Toyota, K., Fukuda, R., Hasegawa, J., Ishida, M., Nakajima, T., Honda, Y., Kitao, O., Nakai, H., Vreven, T., Montgomery, J.A.Jr., Peralta, J.E., Ogliaro, F., Bearpark, M., Heyd, J.J., Brothers, E., Kudin, K.N., Staroverov, V.N., Kobayashi, R., Normand, J., Raghavachari, K., Rendell, A., Burant, J.C., Iyengar, S.S., Tomasi, J., Cossi, M., Rega, N., Millam, J.M., Klene, M., Knox, J.E., Cross, J.B., Bakken, V., Adamo, C., Jaramillo, J., Gomperts, R., Stratmann, R. E., Yazyev, O., Austin, A.J., Cammi, R., Pomelli, C., Ochterski, J.W., Martin, R.L., Morokuma, K., Zakrzewski, V.G., Voth, G.A., Salvador, P., Dannenberg, J.J., Dapprich, S., Daniels, A.D., Farkas, O., Foresman, J.B., Ortiz, J.V., Cioslowski, J., and Fox, D.J. (2009). Gaussian 09, Revision A.1, Gaussian, Inc., Wallingford CT.
  • Dewick, P.M. (1997). Medicinal natural products, J. Wiley & Sons Ltd, Chichester, UK.

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