Effects of Dietary Supplements of DHA-enriched Micro Algae Diet on Physical and Technological Properties of Dairy Cow Milk Fat
Asian Food Science Journal, Volume 22, Issue 9,
Page 131-140
DOI:
10.9734/afsj/2023/v22i9665
Abstract
This study examined the effect of dietary supplementation of DHA-enriched micro algae diet on physical and technological properties of dairy milk fat in terms of the dynamic crystallization and melting behaviour. Two dairy cows were subjected to feeding regime of DHA-enriched micro algae diet and control diet. The experiment was carried out during 21-d to determine the normal (control) and DHA-enriched micro algae diet modified milk fat that were taken for further analysis. The melting and crystallization behaviour of the milk fat from the cows fed control and DHA-enriched micro algae diets was studied using differential scanning calorimetry (DSC), Q1000 (TA Instruments, New Castle, DE, United States). DHA-enriched micro algae supplementation strongly affected the melting and crystallization properties of milk fat. Generally, the onset temperature (°C) of milk fat crystallization was significantly lower in DHA-enriched milk fat as compared to the control. The quantity of heat released by fat crystallization expressed as J/g (peak area) was significantly lower in enriched milk fat. DHA-enriched milk fat also had a lower peak maximum temperature as compared to control in all samples investigated. All melting curves displayed two peaks (lower melting and higher melting peaks) and for melting peaks, DHA-enriched milk fat melted at significantly lower temperature as compared to the control indicating an increase in the degree of unsaturation of milk fat. Melting offset temperature was significantly lower for DHA-enriched milk fat as compared to the control. It can be concluded that from the results of this study, micro algae supplementation significantly altered the milk fat composition and positively affected melting and crystallization behaviour of milk fat.
- Docosahexaenoic acid
- algae diet
- milk fat
- crystallization
- melting
How to Cite
References
Lopez C. Crystallization and melting properties of milk fat. Dairy fat products and functionality: Fundamental science and technology. 2020;205-243.
Manso T, Gallardo B, Guerra-Rivas C. Modifying milk and meat fat quality through feed changes. Small Ruminant Research. 2016;142:31-37.
Shingfield KJ, Bonnet M, Scollan ND. Recent developments in altering the fatty acid composition of ruminant-derived foods. Animal. 2013;7(s1):132-162.
Rego OAd, Rosa HJD, Portugal P, Cordeiro R, Borba AESd, Vouzela C, Bessa RJB. Influence of dietary fish oil on conjugated linoleic acid, omega-3 and other fatty acids in milk fat from grazing dairy cows. Livestock Production Science. 2005;95(1-2):27-33.
Kairenius P, Ärölä A, Leskinen H, Toivonen V, Ahvenjärvi S, Vanhatalo A, Shingfield K. Dietary fish oil supplements depress milk fat yield and alter milk fatty acid composition in lactating cows fed grass silage-based diets. Journal of Dairy Science. 2015;98(8):5653-5671.
Toth T, Mwau PJ, Bazar G, Andrassy-Baka G, Hingyi H, Csavajda E, Varga L. Effect of feed supplementation based on extruded linseed meal and fish oil on composition and sensory properties of raw milk and ultra-high temperature treated milk. International Dairy Journal. 2019; 99:104552.
Antonacci LE, Bussetti M, Rodriguez MA, Cano AV, Gagliostro GA. Effect of diet supplementation with combinations of soybean and linseed oils on milk production and fatty acid profile in lactating dairy ewes. Agricultural Sciences. 2018; 9(02):200.
Singh AP, Avramis CA, Kramer JK, Marangoni AG. Algal meal supplementation of the cows' diet alters the physical properties of milk fat. Journal of dairy research. 2004;71(1):66-73.
Murphy JJ, McNeill GP, Connolly JF, Gleeson PA. Effect on cow performance and milk fat composition of including full fat soyabeans and rapeseeds in the concentrate mixture for lactating dairy cows. Journal of dairy research. 1990;57(3):295-306.
Pacheco-Pappenheim S, Yener S, Nichols K, Dijkstra J, Hettinga K, van Valenberg HJ. Feeding hydrogenated palm fatty acids and rumen-protected protein to lactating Holstein-Friesian dairy cows modifies milk fat triacylglycerol composition and structure, and solid fat content. Journal of Dairy Science. 2022;105(4):2828-2839.
Shazly AB, Hassan LK, Kholif AE-KM, Sayed AF, El-Aziz MA. Quality of milk fat obtained from cows and buffaloes fed a diet supplemented with flaxseed or soybean oils. Acta Scientiarum. Animal Sciences. 2023;45:e58482.
Lin M, Sims C, Staples C, O'keefe S. Flavor quality and texture of modified fatty acid high monoene, low saturate butter. Food research international. 1996;29(3-4):367-371.
Banks W. Chemical and physical properties of milk fat. Utilization of Milk Fat. 1991;4.
Van Aken G, Ten Grotenhuis E, Van Langevelde A, Schenk H. Composition and crystallization of milk fat fractions. Journal of the American Oil Chemists' Society. 1999;76:1323-1331.
Ten Grotenhuis E, Van Aken G, Van Malssen K, Schenk H. Polymorphism of milk fat studied by differential scanning calorimetry and real‐time X‐ray powder diffraction. Journal of the American Oil Chemists' Society. 1999;76(9):1031-1039.
Van Aken G, Visser K. Firmness and crystallization of milk fat in relation to processing conditions. Journal of Dairy Science. 2000;83(9):1919-1932.
Harel M, Koven W, Lein I, Bar Y, Behrens P, Stubblefield J, Place AR. Advanced DHA, EPA and ArA enrichment materials for marine aquaculture using single cell heterotrophs. Aquaculture. 2002;213(1-4):347-362.
Hartel RW. Crystallization in foods. Aspen Publisher; 2002.
Foubert I, Vanrolleghem PA, Dewettinck K. A differential scanning calorimetry method to determine the isothermal crystallization kinetics of cocoa butter. Thermochimica acta, 2003;400(1-2):131-142.
Herrera M, de Leon Gatti M, Hartel R. A kinetic analysis of crystallization of a milk fat model system. Food research international. 1999;32(4):289-298.
Boeckaert C, Vlaeminck B, Dijkstra J, Issa-Zacharia A, Van Nespen T, Van Straalen W, Fievez V. Effect of dietary starch or micro algae supplementation on rumen fermentation and milk fatty acid composition of dairy cows. Journal of Dairy Science. 2008;91(12):4714-4727.
Augustin MA, Versteeg C. Milk fat: Physical, chemical and enzymatic modification. In Advanced dairy chemistry volume 2 lipids. Springer. 2006;293-332
Kaylegian KE, Lindsay RC. Handbook of milkfat fractionation technology and applications. AOCS Press; 1995.
Lopez C, Bourgaux C, Lesieur P, Ollivon M. Crystalline structures formed in cream and anhydrous milk fat at 4 C. Le lait. 2002;82(3):317-335.
Lopez C, Bourgaux C, Lesieur P, Ollivon M. Coupling of time-resolved synchrotron X-ray diffraction and DSC to elucidate the crystallisation properties and polymorphism of triglycerides in milk fat globules. Le lait. 2007;87(4-5): 459-480.
Lopez C, Lesieur P, Bourgaux C, Keller G, Ollivon M. Thermal and structural behavior of milk fat: 2. Crystalline forms obtained by slow cooling of cream. Journal of Colloid and Interface Science. 2001;240(1):150-161.
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