390
Views
18
CrossRef citations to date
0
Altmetric
Extraction

Highly selective purification of ferulic acid from wheat bran using deep eutectic solvents modified magnetic nanoparticles

, , &
Pages 1022-1030 | Received 10 Jul 2016, Accepted 09 Jan 2017, Published online: 22 Feb 2017

References

  • D Archivio, M.; Filesi, C.; Di Benedetto, R.; Garqiulo, R.; Giovannini, C.; Masella, R. (2007) Polyphenols, dietary sources and bioavailability. Annali dell’Istituto Superiore di Sanita, 43 (4): 348–361.
  • Rechner, A.R.; Pannala, A.S.; Rice-Evans, C.A. (2001) Caffeic acid derivatives in artichoke extract are metabolized to phenolic acid in vivo. Free Radical Research, 35 (2): 195–202.
  • Srinivasan, M.; Sudheer, A.R.; Menon, V.P. (2007) Ferulic Acid: therapeutic potential through its antioxitant property. Journal of Clinical Biochemistry and Nutrition, 40 (2): 92–100.
  • Barone, E.; Calabrese, V.; Mancaso, C. (2009) Ferulic acid and its therapeutic potential as a hormetin for agerelated disease. Biogerontology, 10 (2): 97–108.
  • Huag, M.T.; Smart, R.C.; Wong, C.Q.; Conney, A.H. (1998) Inhibitory effect of curcumin, chlorogentic acid, caffeic acid, and ferulic acid on tumor promotion in mouse skin by12-O-tetradecanoylphorbol-13-acetate. Cancer Treatment Reviews, 48 (21): 5941–5946.
  • Ou, S.Y.; Kwok, K.C. (2004) Ferulic acid: Pharmaceutical functions, preparation and applications in foods. Journal of the Science and Food Agriculture, 84 (11): 1261–1269.
  • Graf, E. (1992) Antioxidant potential of ferulic acid. Free Radical Biology and Medicine, 13: 435–448.
  • Barberousse, H.; Roiseux, O.; Robert, C.; Paquot, M.; Deroanne, C.; Blecker, C. (2008) Analytical methodologies for quantification of ferulic acid and its oligomers. Journal of the Science of Food and Agriculture, 88 (9): 1494–1511.
  • Khezeli, T.; Daneshfar, A.; Sahraei, R. (2016) A green ultrasonic-assisted liquid–liquid microextraction based on deep eutectic solvent for the HPLC-UV determination of ferulic, caffeic and cinnamic acid from olive, almond, sesame and cinnamon oil. Talanta, 150: 577–585.
  • Inbaraj, B.S.; Lu, H.; Kao, T.H.; Chen, B.H. (2010) Simultaneous determination of phenolic acids and flavonoids in Lycium barbarum Linnaeus by HPLC–DAD–ESI-MS. Journal of Pharmaceutical and Biomedical Analysis, 51 (3): 549–556.
  • Li, Y.; Ding, M.J.; Wang, S.; Wang, R.Y.; Wu, X.L.; Wen, T.T.; Yuan, L.H.; Dai, P. (2011) Preparation of imprinted polymers at surface of magnetic nanoparticles for the selective extraction of tadalafil from medicines. Applied Materials and Interfaces, 3 (9): 3308–3315.
  • Li, Y.; Li, X.; Chu, J.; Chun, C.; Qi, J.; Yuan, Y. (2010) Synthesis of core-shell magnetic molecular imprinted polymer by the surface RAFT polymerization for the fast and selective removal of endocrine disrupting chemicals from aqueous solutions. Environmental Pollution, 158 (6): 2317–2323.
  • Xu, Z.; Ding, L.; Long, Y.; Xu, L.; Wang, L.; Xu, C. (2011) Preparation and evaluation of superparamagnetic surface molecularly imprinted polymer nanoparticles for selective extraction of bisphenol A in packed food. Analytical Methods, 3 (8): 1737–1744.
  • Zhang, Z.; Tan, W.; Hu, Y.; Li, G. (2011) Simultaneous determination of trace sterols in complicated biological samples by gas chromatography–mass spectrometry coupled with extraction using b-sitosterol magnetic molecularly imprinted polymer beads. Journal of Chromatography A, 1218 (28): 4275–4283.
  • Meng, J.; Bu, J.; Deng, C.; Zhang, X. (2011) Preparation of polypyrrole-coated magnetic particles for micro solid-phase extraction of phthalates in water by gas chromatography–mass spectrometry analysis. Journal of Chromatography A, 1218 (12): 1585–1591.
  • Wu, Q.; Zhao, G.; Feng, C.; Wang, C.; Wang, Z. (2011) Preparation of a graphenebased magnetic nanocomposite for the extraction of carbamate pesticides from environmental water samples. Journal of Chromatography A, 1218 (44): 7936–7942.
  • Li, Y.; Li, X.; Chu, J.; Chun, C.; Qi, J.; Yuan, Y. (2010) Synthesis of core-shell magnetic molecular imprinted polymer by the surface RAFT polymerization for the fast and selective removal of endocrine disrupting chemicals from aqueous solutions. Environmental Pollution, 158 (6): 2317–2323.
  • Xu, Z.; Ding, L.; Long, Y.; Xu, L.; Wang, L.; Xu, C. (2011) Preparation and evaluation of superparamagnetic surface molecularly imprinted polymer nanoparticles for selective extraction of bisphenol A in packed food. Analytical Methods, 3 (8): 1737–1744.
  • Zhang, Z,; Tan, W.; Hu, Y.; Li, G. (2012) Simultaneous determination of trace sterols in complicated biological samples by gas chromatography–mass spectrometry coupled with extraction using b-sitosterol magnetic molecularly imprinted polymer beads. Journal of Chromatography A, 1218 (28): 4275–4283.
  • Cheng, X.; Yan, H.; Wang, X.; Sun, N.; Qiao, X. (2014). Vortex-assisted magnetic dispersive solid-phase microextraction for rapid screening and recognition of dicofol residues in tea products. Food chemistry, 162: 104–109.
  • Abbott, AP.; Capper, G.; Gray, S. (2006) Design of improved deep eutectic solvents using hole theory. Chemical Physics Chemistry, 7 (4): 803–806.
  • Abbott, A.P.; Boothby, D.; Capper, G.; Davies, D.L.; Rasheed, R.K. (2004) Deep eutectic solvents formed between choline chloride and carboxylic acids: versatile alternatives to ionic liquids. Journal of the American Chemical Society, 126 (29): 9142–9147.
  • Zhang, Q.H.; Vigier, K.D.O.; Royer, S.; Jerome, F. (2012) Deep eutectic solvents: syntheses, properties and applications. Chemical Society Reviews, 41 (21): 7108–7146.
  • Li, X.X.; Row, K.H. (2015) Exploration of mesoporous stationary phases prepared using deep eutectic solvents combining choline chloride with 1,2-Butanediol or glycerol for use in size exclusion chromatograph. Chromatographia, 78 (21–22): 1321–1325.
  • Yan, H.Y.; Liu, S.T.; Gao, M.M.; Sun, N. (2013) Ionic liquids modified dummy molecularly imprinted microspheres as solid phase extraction materials for the determination of clenbuterol and clorprenaline in urine. Journal of Chromatography A, 1294: 10–16.
  • Bi, WT.; Tian, M.L.; Row, K.H. (2012) Separation of phenolic acids from natural plant extracts using molecularly imprinted anion-exchange polymer confined ionic liquids. Journal of Chromatography A, 1232: 37–42.
  • González-Álvarez, J.; Blanco-Gomis, D.; Arias-Abrodo, P.; Díaz-Llorente, D.; Ríos-Lombardía, N.; Busto, E.; Gotor-Fernández, V.; Gutiérrez-Álvarez, M.D. (2012) Polymeric imidazolium ionic liquids as valuable stationary phases in gas chromatography: chemical synthesis and full characterization. Analytica Chimica Acta, 721: 173–181.
  • Han, X.; Armstrong, D.W. (2007) Ionic liquids in separations. Accounts of Chemical Research, 40 (11): 1079–1086.
  • Sun, P.; Armstrong, D.W. (2010) Ionic liquids in analytical chemistry. Analytica Chimica Acta, 41 (22): 1–16.
  • Wang, Z.F.; Guo, H.S.; Yu, Y.L.; He, N.Y. (2006) Synthesis and characterization of a novel magnetic carrier with its composition of Fe3O4/carbon using hydrothermal reaction. Journal of Magnetism and Magnetic Materials, 302 (2): 397–404.
  • Kong, X.; Gao, R.; He, X.; Chen, L.; Zhang, Y. (2012) Synthesis and characterization of the core-shell magnetic molecularly imprinted polymers (Fe3O4@MIPs) adsorbents for effective extraction and determination of sulfonamides in the poultry feed. Journal of Chromatography A, 1245: 8–16.
  • Liu, J.; Song, H.; Liu, J.; Liu, Y.; Li, L.; Tang, H.; Li, Y. (2015). Preparation of molecularly imprinted polymer with double templates for rapid simultaneous determination of melamine and dicyandiamide in dairy products. Talanta, 134: 761–767.
  • Allaedini, G.; Aminayi, P.; Tasirin, S.M. (2015) Structural properties and optical characterization of flower-like Mg doped NiO. AIP Advances, 5 (7): 077161.
  • Zhao, S.; Yao, S.; Ou, S.; Lin, J.; Wang, Y.; Peng, X.; Yu, B. (2014) Preparation of ferulic acid from corn bran: its improved extraction and purification by membrane separation. Food and Bioproducts Processing, 92 (3): 309–313.
  • Guo, T.; Sun, Y.; Sui, Y.; Li, F. (2003) Determination of ferulic acid and adenosine in Angelicae Radix by micellar electrokinetic chromatography. Analytical and Bioanalytical Chemistry, 375 (6): 840–843.
  • Kim, K.H.; Tsao, R.; Yang, R.; Cui, S.W. (2006) Phenolic acid profiles and antioxidant activities of wheat bran extracts and the effect of hydrolysis conditions. Food Chemistry, 95 (3): 466–473.
  • Shin, H.D.; McClendon, S.; Le, T.; Taylor, F.; Chen, R.R. (2006) A complete enzymatic recovery of ferulic acid from corn residues with extracellular enzymes from Neosartorya spinosa NRRL185. Biotechnology and Bioengineering, 95 (6): 1108–1115.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.