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Extraction

Optimization: Microwave irradiation effect on polyphenolic compounds extraction from winter savory (Satureja montana L.)

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Pages 1377-1386 | Received 20 Oct 2016, Accepted 26 Jan 2017, Published online: 05 Apr 2017

References

  • Silic, C. (1979) The Monograph of genus Satureja L., Calamintha Miller, Micromeria Bentham, Acinos Miller and Clinopodium L. in Flora of Yugoslavia, Svijetlost: Sarajevo, BiH.
  • Slavkovska, V.; Jancic, R.; Bojović, S.; Milosavljević, S.; Djoković, D. (2001) Variability of essential oils of Satureja montana L. and Satureja kitaibelii wierzb. ex Heuff. from the central part of the balkan peninsula. Phytochemistry, 57 (1): 71–76.
  • Mastelic, J.; Jerkovic, I. (2003) Gas chromatography–mass spectrometry analysis of free and glycoconjugated aroma compounds of seasonally collected Satureja montana L. Food Chemistry, 80 (1): 135–140.
  • Cetkovic, G.S.; Mandic, A.I.; Canadanovic‐Brunet, J.M.; Djilas, S.M.; Tumbas, V.T. (2007) HPLC screening of phenolic compounds in winter savory (Satureja montana L.) extracts. Journal of Liquid Chromatography & Related Technologies, 30 (2): 293–306.
  • Silva, F.V.; Martins, A.; Salta, J.; Neng, N.R.; Nogueira, J.M.; Mira, D.; Gaspar, N.; Justino, C.; Grosso, J.S.; Urieta, A.M.S.; Rauter, A.P. (2009) Phytochemical profile and anticholinesterase and antimicrobial activities of supercritical versus conventional extracts of Satureja montana. Journal of Agricultural and Food Chemistry, 57 (24): 11557–11563.
  • Escudero, J.; Lopez, J.C.; Rabanal, R.M.; Valverde, S. (1985) Secondary metabolites from Satureja species. New triterpenoid from Satureja acinos. Journal of Natural Products, 48 (1): 128–131.
  • Dorman, H.D.; Bachmayer, O.; Kosar, M.; Hiltunen, R. (2004) Antioxidant properties of aqueous extracts from selected Lamiaceae species grown in Turkey. Journal of Agricultural and Food Chemistry, 52 (4): 762–770.
  • Radonic, A.; Milos, M. (2003) Chemical composition and in vitro evaluation of antioxidant effect of free volatile compounds from Satureja montana L. Free Radical Research, 37 (6): 673–679.
  • Vladic, J.; Zekovic, Z.; Cvejin, A.; Adamovic, D.; Vidovic, S.S. (2014) Optimization of Satureja montana extraction process considering phenolic antioxidants and antioxidant activity. Separation Science and Technology, 49 (13): 2066–2072.
  • Vidovic, S.S.; Vladic, J.Z.; Vastag, Z.G.; Zekovic, Z.P.; Popovic, L.M. (2014). Maltodextrin as a carrier of health benefit compounds in Satureja montana dry powder extract obtained by spray drying technique. Powder Technology, 258: 209–215.
  • Vidovic, S.; Zekovic, Z.; Marosanovic, B.; Todorovic, M.P.; Vladic, J. (2014) Influence of pre-treatments on yield, chemical composition and antioxidant activity of Satureja montana extracts obtained by supercritical carbon dioxide. The Journal of Supercritical Fluids, 95: 468–473.
  • Pepeljnjak, S.; Stanic, G.; Potocki, P. (1999) Antimicrobial activity of the ethanolic extract of Satureja montana ssp. montana. Acta Pharmaceutica, 49 (1): 65–69.
  • Cavar, S.; Maksimovic, M.; Solic, M.E.; Jerkovic-Mujkic, A.; Besta, R. (2008) Chemical composition and antioxidant and antimicrobial activity of two Satureja essential oils. Food Chemistry, 111 (3): 648–653.
  • Stanic, G.; Samarzija, I. (1993) Diuretic Activity of Satureja montana subsp. montana extracts and oil in rats. Phytotherapy Research, 7 (5): 363–366.
  • Yamasaki, K.; Nakano, M.; Kawahata, T.; Mori, H.; Otake, T.; Ueba, N.; Oishi, I.; Inami, R.; Yamane, M.; Nakamura, M.; Murata, H.; Nakanishi, T. (1998) Anti-HIV-1 activity of herbs in Labiatae. Biological and Pharmaceutical Bulletin, 21 (8): 829–833.
  • Jukic, M.; Politeo, O.; Maksimovic, M.; Milos, M.; Milos, M. (2007) In vitro acetylcholinesterase inhibitory properties of thymol, carvacrol and their derivatives thymoquinone and thymohydroquinone. Phytotherapy Research, 21 (3): 259–261.
  • Eskilsson, C.S.; Bjorklund, E. (2000) Analytical-scale microwave-assisted extraction. Journal of Chromatography A, 902 (1): 227–250.
  • Metaxas A.C.; Meredith, R.J. (1993) Industrial Microwave Heating. Power Engineering Series 4. Peter Peregrinus Ltd: London. (on behalf of the IEE).
  • Kingston, H.M.; Haswell, S.J. (1997) Microwave Enhanced Chemistry: Fundamentals, Sample Preparation and Applications. American Chemical Society: Washington, USA.
  • Uysal, B.; Sozmen, F.; Buyuktas, B.S. (2010) Solvent-free microwave extraction of essential oils from Laurus nobilis and Melissa officinalis: Comparison with conventional hydro-distillation and ultrasound extraction. Natural Product Communications, 5 (1): 111–114.
  • Bezerra, M.A.; Santelli, R.E.; Oliveira, E.P.; Villar, L.S.; Escaleira, L.A. (2008) Response surface methodology (RSM) as a tool for optimization in analytical chemistry. Talanta, 76 (5): 965–977.
  • Singleton, V.L.; Rossi, J.A. (1965) Colorimetry of total phenolics with phosphomolybdic-phosphotungstic acid reagents. American Journal of Enology and Viticulture, 16 (3): 144–158.
  • Kahkonen, M.P.; Hopia, A.I.; Vuorela, H.J.; Rauha, J.P.; Pihlaja, K.; Kujala, T.S.; Heinonen, M. (1999) Antioxidant activity of plant extracts containing phenolic compounds. Journal of Agricultural and Food Chemistry, 47 (10): 3954–3962.
  • Harborne, J.B. (1984) Methods of Plant Analysis (pp. 1–36), Springer: Netherlands.
  • Espin, J.C.; Soler-Rivas, C.; Wichers, H.J. (2000) Characterization of the total free radical scavenger capacity of vegetable oils and oil fractions using 2, 2-diphenyl-1-picrylhydrazyl radical. Journal of Agricultural and Food Chemistry, 48 (3): 648–656.
  • Oyaizu, M. (1986) Studies on products of browning reaction–antioxidative activities of products of browning reaction prepared from glucosamine. Eiyogaku Zasshi = Japanese Journal of Nutrition, 44 (6): 307–315.
  • Bas, D.; Boyaci, I.H. (2007) Modeling and optimization I: Usability of response surface methodology. Journal of Food Engineering, 78 (3): 836–845.
  • Derringer, G. (1980) Simultaneous optimization of several response variables. Journal of Quality Technology, 12: 214–219.
  • Kaufmann, B.; Christen, P. (2002) Recent extraction techniques for natural products: microwave‐assisted extraction and pressurized solvent extraction. Phytochemical Analysis, 13 (2): 105–113.
  • Chen, L.; Song, D.; Tian, Y.; Ding, L.; Yu, A.; Zhang, H. (2008) Application of on-line microwave sample-preparation techniques. Trends in Analytical Chemistry, 27 (2): 151–159.
  • Spigno, G.; De Faveri, D.M. (2009) Microwave-assisted extraction of tea phenols: A phenomenological study. Journal of Food Engineering, 93 (2): 210–217.
  • Brachet, A.; Christen, P.; Veuthey, J.L. (2002) Focused microwave‐assisted extraction of cocaine and benzoylecgonine from coca leaves. Phytochemical Analysis, 13 (3): 162–169.
  • Gritsenko, N.N. (1973) Polarizability and radii of molecules of some pure liquids. Zhurnal Fizicheskoi Khimii, 47: 2914–2915.
  • Rezvanpanah, S.; Rezaei, K.; Razavi, S.H.; Moini, S. (2008) Use of microwave-assisted hydrodistillation to extract the essential oils from Satureja hortensis and Satureja montana. Food Science and Technology Research, 14 (3): 311–314.
  • Chupin, L.; Maunu, S.L.; Reynaud, S.; Pizzi, A.; Charrier, B.; Bouhtoury, F.C.E. (2015) Microwave assisted extraction of maritime pine (Pinus pinaster) bark: Impact of particle size and characterization. Industrial Crops and Products, 65: 142–149.
  • Dahmoune, F.; Nayak, B.; Moussi, K.; Remini, H.; Madani, K. (2015) Optimization of microwave-assisted extraction of polyphenols from Myrtus communis L. leaves. Food Chemistry, 166: 585–595.
  • Memarzadeh, S.M.; Pirbalouti, A.G.; AdibNejad, M. (2015) Chemical composition and yield of essential oils from Bakhtiari savory (Satureja bachtiarica Bunge.) under different extraction methods. Industrial Crops and Products, 76: 809–816.
  • Seidi Damyeh, M.; Niakousari, M.; Golmakani, M.T.; Saharkhiz, M.J. (2015) Microwave and ohmic heating impact on the in situ hydrodistillation and selective extraction of Satureja macrosiphonia essential oil. Journal of Food Processing and Preservation, 40: 647–656.
  • Nath, A.; Chattopadhyay, P.K. (2007) Optimization of oven toasting for improving crispness and other quality attributes of ready to eat potato-soy snack using response surface methodology. Journal of Food Engineering, 80 (4): 1282–1292.
  • Liyana-Pathirana, C.; Shahidi, F. (2005) Optimization of extraction of phenolic compounds from wheat using response surface methodology. Food Chemistry, 93 (1): 47–56.
  • Filip, S.; Pavlić, B.; Vidović, S.; Vladić, J.; Zeković, Z. (2017) Optimization of microwave-assisted extraction of polyphenolic compounds from Ocimum basilicum by response surface methodology. Food Analytical Methods. doi:10.1007/s12161-017-0792-7.
  • Bartnick, D.D.; Mohler, C.M.; Houlihan, M. (2006) Methods for the production of food grade extracts. U.S. Patent No. 20,060,088,627.
  • Serrano, C.; Matos, O.; Teixeira, B.; Ramos, C.; Neng, N.; Nogueira, J.; Nunes, M.; Marques, A. (2011) Antioxidant and antimicrobial activity of Satureja montana L. extracts. Journal of the Science of Food and Agriculture, 91 (9): 1554–1560.
  • Gulluce, M.; Sokmen, M.; Daferera, D.; Agar, G.; Ozkan, H.; Kartal, N.; Polissou, M.; Sokmen, A.; Sahin, F. (2003) In vitro antibacterial, antifungal, and antioxidant activities of the essential oil and methanol extracts of herbal parts and callus cultures of Satureja hortensis L. Journal of Agricultural and Food Chemistry, 51 (14): 3958–3965.
  • Oke, F.; Aslim, B.; Ozturk, S.; Altundag, S. (2009) Essential oil composition, antimicrobial and antioxidant activities of Satureja cuneifolia Ten. Food Chemistry, 112 (4): 874–879.
  • Zheng, X.; Wang, X.; Lan, Y.; Shi, J.; Xue, S.J.; Liu, C. (2009) Application of response surface methodology to optimize microwave-assisted extraction of silymarin from milk thistle seeds. Separation and Purification Technology, 70 (1): 34–40.
  • Wang, J.; Zhang, J.; Zhao, B.; Wang, X.; Wu, Y.; Yao, J. (2010) A comparison study on microwave-assisted extraction of Potentilla anserina L. polysaccharides with conventional method: Molecule weight and antioxidant activities evaluation. Carbohydrate Polymers, 80 (1): 84–93.
  • Montgomery, D.C. (2008) Design and Analysis of Experiments. John Wiley & Sons, Inc.: USA.

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