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2014 | 23 | 2 |

Tytuł artykułu

Aspects of appropriate feeding of cows for production of milk enriched in the fatty acids, EPA and DHA. A review

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Eicosapentaenoic (EPA) and docosahexaenoic (DHA) acids are long-chain n-3 polyunsaturated fatty acids that are essential for human health. They play an important role in prevention of heart disease and some cancers. The richest source of EPA and DHA are fish and marine products, but in Poland the consumption of fish is slightly declining. Milk enriched with EPA and DHA could be an alternative and effective means of increasing the consumption of these fatty acids. EPA and DHA could be transferred to milk from a cow’s diet or synthesized from their precursor, α-linolenic acid (LNA). Increasing the dietary supply of EPA and DHA, or LNA, has a limited effect, however, due to the extensive biohydrogenation of these fatty acids in the rumen and low uptake by the mammary gland. Feeding protected sources of n-3 polyunsaturated fatty acids does increase the EPA and DHA content of total fatty acids, although absolute levels are relatively low, and results in an increased concentration of conjugated linoleic acid in milk. Issues that need to be researched include the development of a suitable oil supplement and a reliable means of protecting it from rumen biohydrogenation.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

23

Numer

2

Opis fizyczny

p.109-116,ref.

Twórcy

autor
  • Department of Animal Nutrition and Feed Science, National Research Institute of Animal Production, 32-083 Balice, Poland
  • Department of Animal Nutrition and Feed Science, National Research Institute of Animal Production, 32-083 Balice, Poland
autor
  • Faculty of Animal Science, University of Agriculture in Krakow, Al. Mickiewicza 24/28, 30-059 Krakow, Poland

Bibliografia

  • Abu-Ghazaleh A.A., Schingoethe D.J., Hippen A.R., Kalscheur K.F., 2003. Milk conjugated linoleic acid response to fish oil supplementation of diets differing in fatty acid profiles. J. Dairy Sci. 86, 944–953
  • Abu-Ghazaleh A.A., Schingoethe D.J., Hippen A.R., Kalscheur K.F., Whitlock L.A., 2002. Fatty acid profiles of milk and rumen digesta from cows fed fish oil, extruded soybeans or their blend. J. Dairy Sci. 85, 2266–2276
  • Akalin S., Gonc S., Unal G., 2006. Functional properties of bioactive components of milk fat in metabolism. Pakistan J. Nutr. 5, 194–197
  • Arienti G., Harrison F.A., Leat W.M., 1974. The lipase activity of sheep pancreatic juice. Quart. J. Exp. Physiol. Cogn. Med. Sci. 59, 351–359
  • Ashes J.R., Siebert B.D., Gulati S.K., Cuthbertson A.Z., Scott T.W., 1992. Incorporation of n-3 fatty acids of fish oil into tissue and serum lipids of ruminants. Lipids 27, 629–631
  • Brzóska F., Gąsior R., Sala K., Zyzak W., 1999. Effect of calcium salts of fatty acids on yield and milk components (in Polish). Rocz. Nauk. Zoot. 26, 143–157
  • Cant J.P., Freeden A.H., McIntyre T., Gunn J., Crowe N., 1997. Effect of fish oil and monoensin on milk composition of dairy cows. Can. J. Anim. Sci. 77, 125–131
  • Castaneda-Gutierrez E., de Veth M.J., Lock A. L., Dwyer D. A., Murphy K.D., Bauman D.E., 2007. Effect of Supplementation with calcium salts of fish oil on n-3 fatty acids in milk fat. J. Dairy Sci. 90, 4149–4156
  • Chilliard Y., 1993. Dietary fat and adipose tissue metabolism in ruminants, pigs and rodents: a review. J. Dairy Sci. 76, 3897–3931
  • Chilliard Y., Doreau M., 1997. Effect of ruminal or postruminal fish oil supply on cow milk yield and composition. Reprod. Nutr. Develop. 37, 338–339
  • Chilliard Y., Ferlay A., Mansbridge R.M., Doreau R.M., 2000. Ruminant milk fat plasticity: nutritional control of saturated, polyunsaturated, trans and conjugated fatty acids. Ann. Zootech. 49, 181–205
  • DePeters E., Medrano J.F., Reed B.A., 1995. Fatty acid composition of milk fat from three breeds of dairy cattle. Can. J. Anim. Sci. 75, 267–269
  • Doreau M., Chilliard Y., Relquin H., Demeyer D.I., 1999. Manipulation of milk fat in dairy cows. In: P.C. Garnsworthy, J. Wiseman (Editors). Recent Advences in Animal Nutrition. Nottingham University Press, Nottingham (UK), pp. 81–109
  • Doreau M., Ferlay A., 1994. Digestion and utilization of fatty acids by ruminants. Anim. Feed Sci. Tech. 45, 379–396
  • Elmeddah Y., Doreau M., Michalet-Doreau B., 1991. Interaction of lipid supply and carbohydrates in the diet of sheep with digestibility and ruminal digestion. J. Agr. Sci. 116, 437–445
  • EFSA J. (European Food Safety Authority Journal), 2012. Scientific opinion on the tolerable upper intake level of eicosapentaenoic acid (EPA), docosahexaenoic acid (DHA) and docosapentaenoic acid (DPA), Parma (Italy), 10 (7), 2815, pp.1–48
  • FAO/WHO, 1993. Fats and oils in human nutrition. Report of a joint expert consultation. FAO Food and Nutrition, Paper 57. Rome (Italy)
  • Ferlay A., Chabrot J., Elmeddah Y., Doreau M., 1993. Ruminal lipid balance and intestinal digestion by dairy cows fed calcium salts of rapeseed oil fatty acids or rapeseed oil. J. Anim. Sci. 71, 2237–2245
  • Franklin S.T., Martin K.R., Baer R.J., Schingoethe D.J., Hippen A.R., 1999. Dietary marine algae (Schizochytrium sp.) increases concentrations of conjugated linoleic, docosahexaenoic and transvaccenic acids in milk of dairy cows. J. Nutr. 129, 2048–2052
  • Givens D.I., Cottrill B.R., Davies M., Lee P.A., Mansbridge R.J., Moss A.R., 2000. Sources of n-3 polyunsaturated fatty acids additional to fish oil for livestock diets – a review. Nutr. Abstr. Rev. Ser. B 70, 1–19
  • Glover K.E., Budge S., Rose M., Rupasinghe H.P.V., MacLaren L., Green-Johnson J., Fredeen A.H., 2012. Effect of feeding fresh forage and marine algae on the fatty acid composition and oxidation of milk and butter. J. Dairy Sci. 95, 2797–2809
  • Goodridge J., Ingalls J.R., Crow G.H., 2001. Transfer of omega-3 linolenic acid and linoleic acid to milk fat from flaxseed or Linola protected with formaldehyde. Can. J. Anim. Sci. 81, 525–532
  • Griinari J.M., Bauman D.E., 1999. Biosynthesis of conjugated linoleic acid and its incorporation into meat and milk in ruminants. In: M.P. Yurawecz, M.M. Mossoba, J.K.G. Kramer, M.W. Pariza, G.J. Nelson (Editors). Advances in Conjugated Linoleic Acid Research. Vol. 1. AOCS Press, Champaign, IL (USA), pp. 180–200
  • Gulati S.K., Ashes J.R., Ascott T.W., 1999. Hydrogenation of eicosapentaenoic and docosahexaenoic acids and their incorporation into milk fat. Anim. Feed Sci. Tech. 79, 57–64
  • Gulati S.K., Kitessa S.M., Asher J.R., Simos G.C., Wynn P.C., Fleck E., Scott T.W., 2000. Designing milk fat for the new Millennium by dietary strategies. Asian-Austr. J. Anim. Sci. 13, Suppl., 538–541
  • Gulati S.K., McGrath S., Wynn P.C., Scott T.W., 2003. Preliminary results on the relative incorporation of docosahexaenoic and eicosapentaenoic acids into cow’s milk from two types of rumen protected fish oil. Int. Dairy J. 13, 339–343
  • Harfoot C.G., Hazlewood G.P., 1997. Lipid metabolism in the rumen. In: P.N. Hobson, C.S. Stewart (Editors). The Rumen Microbial Ecosystem. Stewart Published by Blackie Academic and Professional. London, pp. 382–419
  • Hebeisen D.F., Hoeflin F., Reusch H.P., Junker E., Lauterburg B.H., 1993. Increased concentrations of omega-3 fatty acids in milk and platelet rich plasma of grass-fed cows. Int. J. Vitam. Nutr. Res. 63, 229–233
  • Jenkins T.C., 1995. Butlysoyamide protects soybean oil from ruminal biohydrogenation: effects of butlysoyamide on plasma fatty acids and nutrient digestion in sheep. J. Anim. Sci. 73, 818–823
  • Kalscheur K.F., Teter B.B., Piperova L.S., Erdman R.A., 1997. Effect of dietary forage concentration and buffer addition on duodenal flow of trans-C18:1 fatty acids and milk fat production in dairy cows. J. Dairy Sci. 80, 2104–2114
  • Karmali R.A., 1989. N-3 fatty acids and cancer. Review. J. Intern. Med., Suppl. 731, 197–200
  • Keady T.W., Mayne C.S., Fitzpatrick D.A., 2000. Effects of supplementation of dairy cattle with fish oil on silage intake, milk yield and milk composition. J. Dairy Res. 67, 137–153
  • Kemp P., Lander D.J., 1984. Hydrogenation in vitro of a-linolenic acid to stearic acid by mixed cultures of pure strains of rumen bacteria. J. Gen. Microbiol. 130, 527–533
  • Kim E.J., Huws S.A., Lee M.R.F., Wood J.D., Muetzel S.M., Wallace R.J., Scollan N.D., 2008. Fish oil increases the duodenal flow of long chain polyunsaturated fatty acids and trans-11 18:1 and decreases 18:0 in steers via changes in the rumen bacterial community. J. Nutr. 138, 889–896
  • Kitessa S.M., Gulati S.K., Ashes J.R., Fleck E., Scott T.W., Nichols P.D., 2001a. Utilisation of fish oil in ruminants. II. Transfer of fish oil fatty acids into goats’ milk. Anim. Feed Sci. Tech. 89, 201–208
  • Kitessa S.M., Gulati S.K., Ashes J.R., Fleck E., Scott T.W., Nichols P.D., 2001b. Utilization of fish oil in ruminants I. Fish oil metabolism in sheep. Anim. Feed Sci. Tech. 89, 189–199
  • Kitessa S.M., Gulati S.K., Ashes J.R., Scott T.W., Fleck E., 2001c. Effect of feeding tuna oil supplement protected against hydrogenation in the rumen on growth and n-3 fatty acid content of lamb fat and muscle. Aust. J. Agr. Res. 52, 433–437
  • Klein C., Jenkins T., 2011. Docosahexaenoic acid elevates trans-18:1 isomers but is not directly converted into trans-18:1 isomers in ruminal batch cultures. J. Dairy Sci. 94, 4676–4683
  • Kołodziejczyk M., 2007. Consumption of fish and fishery products in Poland – analysis of benefits and risks (in Polish). Rocz. Państw. Zakł. Hig. 58, 287–294
  • Konieczny S., 2010. The level of fish and fish preserves consuming at parents and children from super-basic schools in Szczecin (in Polish). Folia Pomer. Univ. Technol. Stetin. Oeconomica 284(61), 27–32
  • Kromhout D., 1989. Fish (oil) consumption and coronary heart disease. In: C. Galli, A.P. Simopoulos (Editors). Dietary ω3 and ω6 Fatty Acids. Biological Effects and Nutritional Essentiality. Plenum Publishing, New York (USA), pp. 273–282
  • Maia M.R.G., Chaudhary L.C., Bestwick C.S., Richardson A.J., McKain N., Larson T.R., Graham I.A., Wallace R.J., 2010. Toxicity of unsaturated fatty acids to the biohydrogenating ruminal bacterium, Butyrivibrio fibrisolvens. BMC Microbiol. 10, 52
  • Noguchi M., Rose D.P., Earashi M., Miyazaki I., 1995. The role of fatty acids and eicosanoid synthesis inhibitors in breast carcinoma. Review. Oncology 52, 265–271
  • Offer N.W., Speake B.K., Dixon J., Marsden M., 2001. Effect of fish-oil supplementation on levels of (n-3) polyunsaturated fatty acids in the lipoprotein fractions of bovine plasma. Anim. Sci. 73, 523–531
  • Rose D.P., Connolly J.M., 1991. Effect of fatty acids and eicosanoid synthesis inhibitors on the growth of two human prostate cancer cell lines. Prostate 18, 243–254
  • Rymer C., Givens D.I., Wahle K.W.J., 2003. Dietary strategies for increasing docozahexaenoic acid (DHA) and eicosapentaenoic acid (EPA) concentrations in bovine milk: a review. Nutr. Abstr. Rev., Ser. B 73 (4), pp. 9R–25R
  • Sprecher H., 2000. Metabolism of highly unsaturated n-3 and n-6 fatty acids. Biochim. Biophys. Acta, 1486, 219–231
  • Strzetelski J., Ryś R., Stasiniewicz T., Lipiarska E., Stankiewicz B., 1993. Effect of heat-treated rapeseeds included to concentrate mixtures on cow performance, milk fat composition and rumen fermentation (in Polish). Rocz. Nauk. Zoot. 20, 107–121
  • Toral P.G., Frutos P., Hervás G., Gómez-Cortés P., Juárez M., de la Fuente M.A., 2010. Changes in milk fatty acid profile and animal performance in response to fish oil supplementation, alone or in combination with sunflower oil, in dairy ewes. J. Dairy Sci. 93, 1604–1615
  • Tsai W.S., Nagawa H., Kaizaki S., Tsuruo T., Muto T., 1998. Inhibitory effects of n-3 polyunsaturated fatty acids on sigmoid colon cancer transformants. J. Gastroenterol. 33, 206–212
  • Van Nevel C.J., Demeyer D.I., 1995. Lipolysis and biohydrogenation of soybean oil in the rumen in vitro: inhibition by antimicrobials. J. Dairy Sci. 78, 2797–2806
  • Van Nevel C.J., Demeyer D.I., 1996. Effect of pH on biohydrogenation of polyunsaturated fatty acids and their Ca-salts by rumen microorganisms in vitro. Arch. Tierernähr. 49, 151–158
  • Wood J.D., Enser M., Fisher A.V., Nute G.R., Richardson R.I., Sheard P.R., 1999. Manipulating meat quality and composition. Proc. Nutr. Soc. 58, 363–370
  • Zymon M., Strzetelski J., Kowalczyk J., Osięgłowski S., 2007. The effects of linseed and rapeseed cultivars and of fish oil on the fatty acid profile of cow milk fat. J. Anim. Feed Sci. 16, Suppl.1, 70–74

Typ dokumentu

Bibliografia

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