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Biochemical Characterization of Tunisian Cichorium Intybus L. Roots and Optimization of Ultrasonic Inulin Extraction

Youkabed Ouederni Zarroug, Aydi Abdelkarim, Sfayhi Terras Dorra, Ghaith Hamdaoui, Mouldi EL Felah, Mnasser Hassouna

Abstract


In this study Cichorium intybus L. roots were tested for its chemical composition, antioxidant activity, and phenolic profile. Optimization of ultrasonic inulin extraction using response surface methodology (RSM) was further investigated. Chicory roots were found to have high value of total carbohydrates (70.43%), soluble fiber (66.93), Neutral detergent fiber (NDF) (33.07%), potassium (380 mg/100g), calcium (540 mg/100g) and sodium (140 mg/100g). Chicory roots exhibit a high content of flavonoids, polyphenols, and tannins. Antioxidant activity measurement reveals the capacity of Chicory roots to scavenge diphenylpicrylhydrazyl (DPPH) radicals. Phenolic acids profile shows the abundance of vanillic acid (19.64%) followed by protocatechuic acid (15.67%). The effect of three independent variables namely extraction time, the ratio of water to raw material and temperature on inulin extraction was studied. Optimum deciding responses were Inulin content, Total Soluble Solids (TSS) content and Water produced inulin yield. The optimal ultrasonic extraction conditions were: extraction time 87 min, liquid to solid ratio 38 (ml/g) and ultrasonic temperature 61°C. Under these conditions, the inulin content, TSS content and produced inulin yield were 35.92%, 24.72%, and 32.53%, respectively. The produced inulin was characterized by the Fourier infrared transformation (FTIR) and observed by means of scanning electron microscopy (SEM).


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- H.P. Bais, G. A. Ravishankar, J Sci Food Agric, 2001, 81, 467-484.

- M. Kim, H. K. Shin, J Nutr, 1996, 126, 2236-2242.

- H . Hoste, F.Jackson, Athanasiadouos, S.M. Thamsborg, S.O. Hoskin, Trends Parasitol, 2006, 22, 253-261.

- F. Adje, Y.F. Lozano, P. Lozano, A .Adima, F. Chemat, E.M. Gaydou, Ind. Crop Prod, 2010, 32, 439-444.

- G.M. Figueira, K.J. Park, F.P.R. Brod, S.L. Honório, J. Food Eng, 2004, 63, 273-280.

- Q.H. Chen, M.L. Fu, J. Liu, H.F. Zhang, G.Q. He, H. Ruan, Ultrason. Sonochem, 2009,16, 599-604.

- P.N. Diouf, T. Stevanovic, Y. Boutin, Ind. Crops Prod, 2009, 30, 297-303.

- AOAC (Association of Official Analytic Chemists), In official methods of analysis of the Association of the Official Analytical Chemists;18th ed. Arlington, 2005, VA, AOAC .

- M. Dubois, K.A. Gilles, J.K. Hamilton, P.A. Rebers, F. Smith, Anal. Chem,1956, 28, 350-356.

- G.L. Miller, Analytical Chemistry,1959, 31, 420-428.

- D.R .Mertens, In: 30 Th Calif. Alfalfa Symp. 29th. Natl. Alfalfa Symp, 2000; USDA-Agricultural Research Service, 1-14.

- M.Lahaye, D. Jegou, Journal of Applied Phycology, 1993, 5, 195-200.

- AFNOR, Association Française de Normalisation, 1996, AFNOR (Ed.), NF-T-90-019.

- J.L. Mau, S.Y. Tsai, Y.H. Tseng, S.J. Huang, Food Chem, 2005, 93, 641-649.

- S. de Pascual-Teresa, C. Santos-Buelga, J.G. Rivas-Gonzalo, J. Agric. Food Chem, 2000, 48, 5331-5337.

- V. Dewanto, X. Wu, K.K. Adom, R.H. Liu, J. Agric. Food Chem, 2002,50, 3010-3014.

- B. Sun, J.M.Ricardo-da-Silva, I. Spranger, J. Agric. Food Chem, 1998, 46, 4267-4274.

- T. Hantano, H. Kagawa, T. Yasuhara, T. Okuda, Chem. Pharm. Bull.(Tokyo), 1988, 36 , 2090-2097.

- B.S. Patro, A.K. Bauri, S. Mishra, S. Chattopadhyay, J. Agric. Food Chem, 2005, 53, 6912-6918.

- C.Proestos, I.S. Boziaris, G.J.E. Nychas, M. Komaitis, Food Chem, 2006, 95, 664-671.

- S. Bourgou, R. Ksouri, A. Bellila, I. Skandrani, H. Falleh, B. Marzouk,C. R. Biol, 2008,331, 48-55.

- C.Van Waes, J. Baert, L. Carlier, E. Van Bockstaele, J. Sci. Food Agric,1998, 76, 107-110.

- W. Lingyun, W. Jianhua, Zh. Xiaodong, I. Da, Y. Yalin, C .Chenggang, F. Tianhua, ZH. Fan, J. of Food Eng, 2007, 79, 1087-1093.

- G. E. P. Box, W. G. Hunter, J. S. Hunter, In New York; John Wiley and Sons, 1978.

- Y.Q. Guo, N. Ahmad, D.H . Shin, K.U. Kim, Allelopathy J, 2009, 24, 321-329.

- A. Monti, M.T. Amaducci, G. Pritoni, G. Venturi, J. Exp. Bot, 2005, 56, 1389-1395.

- I. M. Mona., A. A. Wafaa, A.A. Elgindy, J. Adv. Agric. Res, 2009, 14 (3), 735-756.

- S.Terzic, J.Atlagic,Genetika, 2009, 41, 289-295.

- R.A. Kaneez, K.M. Shirin, M.A.K. Qadiruddin, Y. Badar, Pak. J. Sci. Ind. Res, 2000, 43, 283-284.

- M.A. Shad, H. Nawaz, T. Rehman, N. Ikram, J. Anim. Plant Sci, 2013, 23, 1060-1066.

- M. Kumari, S. Gupta, A. J. Lakshmi, J. Prakash, Food Chem, 2004, 86, 217-222.

- M. Innocenti, S.Gallori, C. Giaccherini, F. Ieri, F.F. Vincieri, N. Mulinacci, Journal of Agricultural and Food Chemistry, 2005, 53, 6497-6502

- N. Mulinacci, M. Innocenti, S. Gallori, A. Romani, G. la Marca, F.F.Vincieri, Chromatographia, 2001, 54, 455-461.

- M.M . Moussa, M.I. Massoud, M.A. Zeitoun, J.Food Sci.and Technol, 2005, 2, 29-18.

- A.I.Khuri, S. Mukhopadhyay, In Wiley Interdiscip. Rev. Comput. Stat, 2010, 2, 128-149.

- G.E.P. Box, J.S. Hunter, Ann. Math. Stat,1957, 28, 195-241.

- G.E.P. Box, K.B. Wilson, J. R. Stat. Soc Ser. B, 1951, 13, 1-45.

- W.G.Cochran, G.M. Cox, In John Wiley and Sons, New 5 York, 1957.

- J. C. Toneli., E. X. M. Fernanda, P. Martinelli, I. M. Dal Fabbro, J .Kil, Journal of Food Engineering, 2007, 80, 832-838.

- O. N.Wasan, Journal of Engineering, 2014, 10, 110-119

- S.Winarti, E. Harmayani, R.Nurismanto, In the 12th Asean Food Conference, 2011, 669-773.

- A. M.Gaafar, M. F. Serag El-Din, E. A. Boudy, H. H.El-Gazar, Journal of American Science, 2010, 6, 36-43.

- E. Milani, A.Koocheki, Q.A.Golimovahhed, Int. J. Food Sci. Technol, 2011, 46, 1699-1704.

- X. Y. Wu, P. I. Lee, J. Appl. Polym. Sci, 2000, 77, 833-840.




DOI: http://dx.doi.org/10.13171/mjc61/01611042220-zarroug

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