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Original Articles

Analysis of wax esters in seven commercial waxes using C30 reverse phase HPLC

ORCID Icon, , , & ORCID Icon
Pages 604-611 | Received 15 Mar 2018, Accepted 02 Jun 2018, Published online: 11 Sep 2018

References

  • Weller, C. L.; Gennadios, A.; Saraiva, R. A.; Cuppett, S. L. Grain Sorghum Wax as an Edible Coating for Gelatin-Based Candies. J. Food Quality 1998, 21, 117–128.
  • Martinez-Avila, G. C. G.; Aguilera, A. F.; Saucedo, S.; Rojas, R.; Rodriguez, R.; Aguilar, C. N. Fruit Wastes Fermentation for Phenolic Antioxidants Production and Their Application in Manufacture of Edible Coatings and Films. Crit. Rev. Food Sci 2014, 54, 303–311.
  • Bemer, H. L.; Limbaugh, M.; Cramer, E. D.; Harper, W. J.; Maleky, F. Vegetable Organogels Incorporation in Cream Cheese Products. Food Res. Int. 2016, 85, 67–75.
  • Hwang, H. S.; Sanghoon, K.; Singh, M.; Winkler-Moser, J. K.; Liu, S. X. Organogel Formation of Soybean Oil with Waxes. J. Am. Oil Chem. Soc. 2012, 89, 639–647.
  • Fahn, A. Plant Anatomy. Pergamon Press: Oxford, 1990.
  • Domínguez, E.; Cuartero, J.; Heredia, A. An Overview on Plant Cuticle Biomechanics. Plant Sci. 2011, 181, 77–84. DOI: 10.1016/j.plantsci.2011.04.016
  • Jetter, R.; Kunst, L.; Samuels, L. Composition of plant cuticular waxes. In Annual Plant Reviews, Biology of the Plant Cuticle, M. Riederer, C. Muller, Eds.; Wiley & Sons: New York; 2008.
  • Samuels, L.; Kunst, L.; Jetter, R. Sealing Plant Surfaces: Cuticular Wax Formation by Epidermal Cells. Annu. Rev. Plant Biol. 2008, 59, 683–707.
  • Kunst, L.; Samuels, L. Plant Cuticles Shine: Advances in Wax Biosynthesis and Export. Curr. Opin. Plant Biol. 2009, 12, 721–727.
  • Lemieux, B. Molecular Genetics of Epicuticular Wax Biosynthesis. Trends Plant Sci. 1996, 1, 312–318.
  • Neinhuis, C.; Koch, K.; Barthlott, W. Movement and Regeneration of Epicuticular Waxes through Plant Cuticles. Planta. 2001, 213, 427–434.
  • Tada, A.; Ishizuki, K.; Yamazaki, T.; Sugimoto, N.; Akiyama, H. Method for the Determination of Natural Ester-Type Gum Bases Used as Food Additives Via Direct Analysis of their Constituent Wax Esters Using High-Temperature GC/MS. Food Sci. Nutr. 2014, 2, 417–425.
  • Harron, A. F.; Powell, M. J.; Nunez, A.; Moreau, R. A. Analysis of Sorghum Wax and Carnauba Wax by Reversed Phase Liquid Chromatography Mass Spectrometry. Ind. Crop. Prod. 2017, 98, 116–129.
  • Vandenburg, L. E.; Wilder, E. A. The Structural Constituents of Carnauba Wax. J. Am. Oil Chem. Soc. 1970, 47, 514–518.
  • Hwang, K. T.; Cuppett, S. L.; Weller, C. L.; Hanna, M. A. HPLC of Grain Sorghum Wax Classes Highlighting Separation of Aldehydes from Wax Esters and Steryl Esters. J. Sep. Sci. 2002, 25, 619–623.
  • Toro-Vazquez, J. F.; Morales-Rueda, J. A.; Dibildox-Alvarado, E.; Charo-Alonso, M.; Alonzo-Macias, M.; Gonzalez-Chavez, M. M. Thermal and Textural Properties of Organogels Developed by Candelilla Wax in Safflower Oil. J. Am. Oil Chem. Soc. 2007, 84, 989–1000.
  • Kanya, T. C. S.; Rao, L. J.; Sastry, M. C. S. Characterization of Wax Esters, Free Fatty Alchohols and Free Fatty Acids in Crude Wax from Sunflower Seed Oil Refineries. Food Chem. 2007, 101, 1552–1557.
  • Vali, S. R.; Ju, Y.-H.; Kaimal, T. N. B.; Chern, Y. T. A Process for the Preparation of Food-Grade Rice Bran Wax and the Determination of Its Composition. J. Am. Oil Chem. Soc. 2005, 82, 57–64.
  • Moreau, R. A.; Huang, A. H. C. Gluconeogenesis from Storage Wax in the Cotyledons of Jojoba Seedlings. Plant Physiol. 1977, 60, 329–333.
  • Kim, K. S.; Park, S. H.; Jenks, M. A. Changes in Leaf Cuticular Waxes of Sesame (Sesamum Indicum L.) Plants Exposed to Water Deficit. J. Plant Physiol. 2007, 164, 1134–1143. DOI: 10.1016/j.jplph.2006.07.004.
  • Macková, J.; Vašková, M.; Macek, P.; Hronková, M.; Schreiber, L.; Šantrůček, J. Plant Response to Drought Stress Simulated by ABA Application; Changes in Chemical Composition of Cuticle Membranes. Env. Expt. Bot. 2013, 86, 70–75.
  • Shepherd, T.; Robertson, G. W.; Griffiths, D. W.; Birch, A. N. E.; Duncan, G. Effects of Environment on the Composition of Epicuticular Wax from Kale and Swede. Phytochem. 1995, 40, 407–417.
  • Hamilton, R. J. Plant waxes. In Waxes: Chemistry, Molecular Biology and Functions, The Oily Press: Dundee (Scotland), 1995; pp 211–212.
  • Bianchi, G.; Vlahov, G.; Anglani, C.; Murelli, C. Epicuticular Wax of Olive Leaves. Phytochemistry. 1992, 32, 49–52.
  • Giuffrè, A. M. Influence of Harvest Year and Cultivar on Wax Composition of Olive Oils. Eur. J. Lipid Sci. Technol. 2013, 115, 549–555. DOI: 10.1002/ejlt.201200235
  • Giuffrè, A. M. Wax Ester Variation in Olive Oils Produced in Calabria (Southern Italy) during Olive Ripening. J. Am. Oil Chem. Soc. 2014, 91, 1355–1366. DOI: 10.1007/s11746-014-2476-4
  • Vrkoslav, V.; Urbanová, K.; Cvačka, J. Analysis of Wax Ester Molecular Species by High Performance Liquid Chromatography/Atmospheric Pressure Chemical Ionization Mass Spectrometry. J. Chromatogr. A. 2010, 1217, 4184–4194.
  • Tulloch, A. P. Composition of Beeswax and Other Waxes Secreted by Insects. Lipids. 1970, 5, 247–258.
  • Palou, A.; Cruz, J.; Blanco, M.; Larraz, R.; Frontela, J.; Bengoechea, C. M.; Gonzalez, J. M.; Alcala, M. Characterization of the Composition of Paraffin Waxes on Industrial Applications. Energy Fuels. 2014, 28, 956–963.
  • Matzat, N.; Hildebrand, G.; Richter, F.; Stepanski, M.; Lippuner, F.; Engstler, H.; Jans, B. J. Process for obtaining paraffin or paraffin fractions. United States Patent US 6,074,548, 2000.
  • AOCS. 2009. Determination of wax content by capillary gas-liquid chromatography. Official Method Ch 8-02.
  • IOC Trade Standard Applying to Olive Oils and Olive-Pomace Oils. COI/T.15/NC No 3/Rev. 9 Jun 2015 EU, 2015. Consolidated Text. Characteristics of Olive Oil, 1991R2568-EN-01.01.2015-027.001. Annex IV, 2015.
  • Vichi, S.; Cortés-Francisco, N.; Romero, A.; Caixach, J. Direct Chemical Profiling of Olive (Olea Europaea) Fruit Epicuticular Waxes by Direct Electrospray-Ultrahigh Resolution Mass Spectrometry. J. Mass Spectrom. 2015, 50, 558–566.
  • Busson-Breysse, J.; Farines, M.; Soulier, J. Jojoba Wax: Its Esters and Some of Its Minor Components. J. Am. Oil Chem. Soc. 1994, 71, 999–1003.
  • Medvedovici, A.; Lazou, K.; d'Oosterlinck, A.; Zhao, Y.; Sandra, P. Analysis of Jojoba Oil by LC-Coordination Ion Spray-MS (LC-CIS-MS). J. Sep. Sci. 2002, 25, 173–118.

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