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Original Articles

Antioxidative capacity of crude camellia seed oil: Impact of lipophilization products of blueberry anthocyanin

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Pages 1627-1636 | Received 14 Feb 2017, Accepted 02 Jul 2017, Published online: 21 Dec 2017

References

  • Li, H.; Zhou, G. Y.; Zhang, H. Y.; Liu, J. A. Research Progress on the Health Function of Tea Oil. Journal of Medicinal Plants Research 2011, 5, 485–489.
  • Shahidi, F.; Zhong, Y. Lipid Oxidation and Improving the Oxidative Stability. Chemical Society Reviews 2010, 39, 4067–4079.
  • Taghvaei, M.; Jafari, S. M. Application and Stability of Natural Antioxidants in Edible Oils in order to Substitute Synthetic Additives. Journal of Food Science and Technology 2015, 52, 1272–1282.
  • Branen, A. L.;. Toxicology and Biochemistry of Butylated Hydroxyanisole and Butylated Hydroxytoluene. Journal of the American Oil Chemists’ Society 1975, 52, 59–63.
  • Botterweck, A. A. M.; Verhagen, H.; Goldbohm, R. A.; Kleinjans, J.; Van Den Brandt, P. A. Intake of Butylated Hydroxyanisole and Butylated Hydroxytoluene and Stomach Cancer Risk: Results from Analyses in the Netherlands Cohort Study. Food and Chemical Toxicology 2000, 38, 599–605.
  • Quideau, S.; Deffieux, D.; Douat-Casassus, C.; Pouységu, L. Plant Polyphenols: Chemical Properties, Biological Activities, and Synthesis. Angewandte Chemie International Edition 2011, 50, 586–621.
  • Aladedunye, F.; Matthäus, B. Phenolic Extracts from Sorbus aucuparia (L.) and Malus baccata (L.) Berries: Antioxidant Activity and Performance in Rapeseed Oil during Frying and Storage. Food Chemistry 2014, 159, 273–281.
  • Aladedunye, F. A.;. Natural Antioxidants as Stabilizers of Frying Oils. European Journal of Lipid Science and Technology 2014, 116, 688–706.
  • Asefi, N.;. Stabilization of Sunflower Oil by Pennyroyal (Mentha Piperita) Extracts during Accelerated Storage. International Journal of Food Properties 2017, 20, 30–40.
  • Sayyad, R.; Jafari, S.; Ghomi, M. Thermoxidative Stability of Soybean Oil by Natural Extracted Antioxidants from Rosemary (Rosmarinus officinalis L.). International Journal of Food Properties 2017, 20, 436–446.
  • Kurhade, A. H.; Waghmare, J. S. Effect of Banana Peel Oleoresin on Oxidative Stability of Sunflower and Soybean Oil. Journal of Food Processing and Preservation 2015, 39, 1788–1797.
  • Ma, X.; Yan, R.; Yu, S.; Lu, Y.; Li, Z.; Lu, H. Enzymatic Acylation of Isoorientin and Isovitexin from Bamboo-Leaf Extractswith Fatty Acids and Antiradical Activity of the Acylated Derivatives. Journal of Agricultural and Food Chemistry 2012, 60, 10844–10849.
  • Huang, D.; Ou, B.; Prior, R. L. The Chemistry behind Antioxidant Capacity Assays. Journal of Agricultural and Food Chemistry 2005, 53, 1841–1856.
  • Galli, R. L.; Bielinski, D. F.; Szprengiel, A.; Shukitt-Hale, B.; Joseph, J. A. Blueberry Supplemented Diet Reverses Age-Related Decline in Hippocampal HSP70 Neuroprotection. Neurobiology of Aging 2006, 27, 344–350.
  • You, Q.; Wang, B.; Chen, F.; Huang, Z.; Wang, X.; Luo, P. G. Comparison of Anthocyanins and Phenolics in Organically and Conventionally Grown Blueberries in Selected Cultivars. Food Chemistry 2011, 125, 201–208.
  • Glӓssgen, W. E.; Seitz, H. U. Acylation of Anthocyanins with Hydroxycinnamic Acids via 1-O-Acylglucosides by Protein Preparations from Cell Cultures of Daucus Carota L. Planta 1992, 186, 582–585.
  • Stevenson, D. E.; Wibisono, R.; Jensen, D. J.; Stanley, R. A.; Cooney, J. M. Direct Acylation of Flavonoid Glycosides with Phenolic Acids Catalysed by Candida Antarctica Lipase B (Novozym 435®). Enzyme and Microbial Technology 2006, 39, 1236–1241.
  • Liu, L.; Jin, C.; Zhang, Y. Lipophilic Phenolic Compounds (Lipo-Pcs): Emerging Antioxidants Applied in Lipid Systems. The Royal Society of Chemistry 2014, 4, 2879–2891.
  • Aladedunye, F.; Niehaus, K.; Bednarz, H.; Thiyam-Hollander, U.; Fehling, E.; Matthäus, B. Enzymatic Lipophilization of Phenolic Extract from Rowanberry (Sorbus aucuparia) and Evaluation of Antioxidative Activity in Edible Oil. LWT - Food Science and Technology 2015, 60, 56–62.
  • Zhong, Y.; Shahid, I. F. Lipophilized Epigallocatechin Gallate (EGCG) Derivatives as Novel Antioxidants. Journal of Agricultural and Food Chemistry 2011, 59, 6526–6533.
  • Zhong, Y.; Ma, C.-M.; Shahidi, F. Antioxidant and Antiviral Activities of Lipophilic Epigallocatechin Gallate (EGCG) Derivatives. Journal of Functional Foods 2012, 4, 87–93.
  • Vaisali, C.; Charanyaa, S.; Belur, P. D.; Regupathi, I. Refining of Edible Oils: A Critical Appraisal of Current and Potential Technologies. International Journal of Food Science and Technology 2015, 50, 13–23.
  • García, A.; Ruiz-Méndez, M. V.; Romero, C.; Brenes, M. Effect of Refining on the Phenolic Composition of Crude Olive Oils. Journal of the American Oil Chemists’ Society 2006, 83, 159–164.
  • Yoon, S. H.; Kim, M.; Gil, B. Deacidification Effects of Rice Hull-Based Adsorbents as Affected by Thermal and Acid Treatment. LWT - Food Science and Technology 2011, 44, 1572–1576.
  • Lee, S. Y.; Jung, M. Y.; Yoon, S. H. Optimization of the Refining Process of Camellia Seed Oil for Edible Purposes. Food Science and Biotechnology 2014, 23, 65–73.
  • Nergiz, C.; Celikkale, D. The Effect of Consecutive Steps of Refining on Squalene Content of Vegetable Oils. Journal of Food Science and Technology 2011, 48, 382–385.
  • Lohachoompol, V.; Mulholland, M.; Srzednicki, G.; Craske, J. Determination of Anthocyanins in Various Cultivars of Highbush and Rabbiteye Blueberries. Food Chemistry 2008, 111, 249–254.
  • Persson, X.-M. T.; Błachnio-Zabielska, A. U.; Jensen, M. D. Rapid Measurement of Plasma Free Fatty Acid Concentration and Isotopic Enrichment Using LC/MS. Journal of Lipid Research 2010, 51, 2761–2765.
  • Abdulkarim, S. M.; Long, K. O.; Lai, M.; Muhammad, S. K. S.; Ghazali, H. M. Frying Quality and Stability of High-Oleic Moringa oleifera Seed Oil in Comparison with Other Vegetable Oils. Food Chemistry 2007, 105, 1382–1389.
  • Mariod, A.; Matthäus, B.; Eichner, K.; Hussein, I. H. Frying Quality and Oxidative Stability of Two Unconventional Oils. Journal of the American Oil Chemists’ Society 2006, 83, 529–538.

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