Peran Selenium dan Vitamin E pada Ruminansia: Ulasan Singkat

The Role of Selenium and Vitamin E in Ruminants: A Brief Review

Authors

  • Yanuartono FKH-UGM
  • Soedarmanto Indarjulianto Fakultas Kedokteran Hewan, Universitas Gadjah Mada
  • Alsi Dara Paryuni Fakultas Kedokteran Hewan, Universitas Gadjah Mada

DOI:

https://doi.org/10.22437/jiiip.v27i1.31614

Keywords:

immune function, Selenium, Vitamin E, white muscle disease

Abstract

Background: Selenium (Se) is an element commonly found in nature. Selenium is found in the soil and is absorbed by plants at different levels depending on plant species, fertilizer use, and rainfall, while vitamin E is abundant in legume plants and fresh grass. Selenium and vitamin E are essential elements for ruminants and are needed for average growth and help prevent other health problems. The roles of these two elements are closely related because they can protect cells from the detrimental effects of oxidation, even though they have different mechanisms. Deficiency of one or both elements can cause white muscle disease, retained placenta, metritis, decreased immune function, and mastitis. However, research and field studies also show that Se and vitamin E can cause poisoning in ruminants. Reviews : This article will briefly review the impact of Se Vitamin E deficiency and toxicity on ruminants.

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References

Daftar Pustaka

Abdalla MA, Sulieman S, Muhling KH. 2020. Regulation of Selenium/Sulfur Interactions to Enhance Chemopreventive Effects: Lessons to Learn from Brassicaceae. Molecules. 25: 5846. doi: 10.3390/molecules25245846.

Abernathy CO, Cantilli R, Du JT, Levander OA. 1993. Essentiality versus toxicity: some consideration in the risk assessment of essential trace elements. In: Hazard assessment of chemicals, ed. Savera J, pp. 81–113. Taylor and Francis, Washington, DC.

Abuelo A, Alves-Nores V, Hernandez J, Muiño R, Benedito J.L, Castillo C. 2016. Effect of parenteral antioxidant supple-mentation during the dry period on postpartum glucose tolerance in dairy cows. J. Vet. Intern. Med. 30: 892–898

Abutarbush SM, Radostits OM. 2003. Congenital nutritional muscular dystrophy in a beef calf. Can Vet J. 44:738-739.

Adeyemi KD, Sabow AB, Aghwan ZA, Ebrahimi M, Samsudin AA, Alimon AR, Sazili AQ. 2016. Serum fatty acids, biochemical indices and antioxidant status in goats fed canola oil and palm oil blend. J. Anim. Sci. Technol. 58: 1-16. doi: 10.1186/s40781-016-0088-2

Ahmed KE, Adam SE, Idrill OF, Wahbi AA. 1990. Experimental selenium poisoning in Nubian goats. Vet Hum Toxicol. 32: 249-251.

Ahuja SK. 1993. Studies on selenium toxicity in dairy animals with special reference to soil, plant and animal inter-relationship. Post Graduate Thesis, Punjab Agricultural University, Ludhiana, Punjab.p 23-26

Alexander J. 2015. Chapter 52 – Selenium. Handbook on the Toxicology of Metals 4th. Volume II, Pages 1175-1208. https://doi.org/10.1016/B978-0-444-59453-2.00052-4

Allison RD, Laven RA. 2000. Effect of vitamin E supplementation on the health and fertility of dairy cows: a review. Vet Rec. 147:703-708.

Al-Mabruk RM, Beck NFG, Dewhurst R. J.2004. Effects of Silage Species and Supplemental Vitamin E on the Oxidative Stability of Milk. J. Dairy Sci. 87:406–412. https://doi.org/10.3168/jds.S0022-0302(04)73180-X

Amazan D, Rey AI, Fernández E, López-Bote CJ. 2012. Natural vitamin E (D-α-tocopherol) supplementation in drinking water prevents oxidative stress in weaned piglets. Livestock Science 145: 55–62. https://doi.org/10.1016/j.livsci.2011.12.022

Amini K, Simko E, Davies JL. 2011. Diagnostic Exercise: Sudden Death Associated with Myocardial Contraction Band Necrosis in Boer Goat Kids. Veterinary Pathology 48: 1212-1215. DOI: 10.1177/0300985810381246

Ammerman CB, Miller SM. 1975. Selenium in Ruminant Nutrition: A Review1 Journal of Dairy Science. 58: 1561-1577. https://doi.org/10.3168/jds.S0022-0302(75)84752-7

Arnold RNK, Scheller K, Arp SC, Williams SN, Schaefer DM. 1993b. Dietary a-tocopheryl acetate enhances beef quality in Holstein and beef breed steers. J. Food Sci. 58:28. https://doi.org/10.1111/j.1365-2621.1993.tb03203.x

Arthur JR, McKenzie RC, Becket GJ. 2003. Selenium in the immune system. J Nutr 133:1457S–1459S.

Avery JC, Hoffmann PR. 2018. Selenium, Selenoproteins, and Immunity. Nutrients.; 10:1203. https://doi.org/10.3390/nu10091203

Baiomy AA, Suliman AIA. 2012. Effects of Zinc, Selenium and Vitamin E Injections On The Concentration Of Fatty Acids, Conjugated Linoleic Acid (Cla) Isomers And Cholesterol In Ossimi Ewes Blood And Milk. Egyptian J. Anim. Prod. 49: 135-141

Benarba B, Pandiella A. 2020. What about incorporating selenium in the therapeutic regimen of SARS-CoV-2? EXCLI J. 7: 1544-1546. doi: 10.17179/excli2020-2968.

Beytut E, Karatas F, Beytut E. 2002. Lambs with White Muscle Disease and Selenium Content of Soil and Meadow Hay in the Region of Kars, Turkey. The Veterinary Journal. 163: 214-217. https://doi.org/10.1053/tvjl.2001.0652

Bień D, Michalczuk M, Szkopek D, Kinsner M, Konieczka P. 2022. Changes in lipids metabolism indices as a result of different form of selenium supplementation in chickens. Sci Rep. 12:13817. doi: 10.1038/s41598-022-18101-2.

Biesalski Hans K, Jana, T. 2018. Micronutrients in the life cycle: Requirements and sufficient supply. NFS Journal 11:1–11 https://doi.org/10.1016/j.nfs.2018.03.001

Birch KS, Thomas JD, Ross TT. 1994. Growth and carcass characteristics of newly received feeder lambs treated with probiotics and vitamin E. Sheep and Goat Research Journal 10: 201-206

Blodgett DJ, Bevill RF. 1987. Acute selenium toxicosis in sheep. Vet Hum Toxicol. 29: 233–236.

Boschin G, Arnoldi A. 2011. Legumes are valuable sources of tocopherols. Food Chem. 127: 1199-1203. doi: 10.1016/j.foodchem.2011.01.124.

Bourne N, Laven R, Wathes D, Martinez T, McGowan M. 2007. A meta-analysis of the effects of vitamin E supplementation on the incidence of retained foetal membranes in dairy cows. Theriogenology. 67: 494-501. https://doi.org/10.1016/j.theriogenology.2006.08.015

Bouwstraa RJ, Nielen M, Stegeman JA, Dobbelaar P, Newbold JR, Jansen EHJM. 2010. Vitamin E supplementation during the dry period in dairy cattle. Part I: adverse effect on incidence of mastitis postpartum in a double-blind randomized field trial. J Dairy Sci. 93: 5684–5695.

Bouwstra RJ, Nielen M, Newbold JR, Jansen EH, Jelinek HF, van Werven T. 2010. Vitamin E supplementation during the dry period in dairy cattle. Part II: Oxidative stress following vitamin E supplementation may increase clinical mastitis incidence postpartum. J. Dairy Sci. 93: 5696–5706

Buck E, Tripp MJ, Schmitz JA, Swanson LV. 1981. Incorporation of 75 Se into endocrine glands and reproductive tissues of the prepartum ewe and fetus. in Selenium in biology and medicine. Spallholz JE, Martin JL. and Ganther HE (Eds), AVI Pub. Co., Westport, CT.

Burbank AJ, Duran CG, Pan Y, Burns P, Jones S, Jiang Q, Yang C, Jenkins S, Wells H, Alexis N. 2018. Gamma tocopherol-enriched supplement reduces sputum eosinophilia and endotoxin-induced sputum neutrophilia in volunteers with asthma. J. Allergy Clin. Immunol. 141: 1231–1238.

Burk RF, Hill KE. 1993. Regulation of selenoproteins. Annual Revision Nutrition, 13: 65-81.

Ceko MJ, Hummitzsch K, Hatzirodos N, Bonner WM, Aitken JB, Russell DL, Lane M, Rodgers RJ, Harris HH. 2015. X-ray fluorescence imaging and other analyses identify selenium and GPX1 as important in female reproductive function. Metallomics. 7: 66–77.

Cengiz M, Bastan A. 2015. Effectiveness of dry cow therapy antibiotic treatment, internal teat sealant, and α-tocopherol against new intramammary infections in cows. Bull Vet Inst Pulawy. 59: 71–78.

Cui X, Wang Z, Tan Y, Chang S, Zheng H, Wang H, Yan T, Guru T, Hou F. 2021. Selenium Yeast Dietary Supplement Affects Rumen Bacterial Population Dynamics and Fermentation Parameters of Tibetan Sheep (Ovis aries) in Alpine Meadow. Front Microbiol. 2: 663945. doi: 10.3389/fmicb.2021.663945.

Dalia AM, Loh TC, Sazili AQ, Jahromi MF, Samsudin AA. 2018. Effects of vitamin E, inorganic selenium, bacterial organic selenium, and their combinations on immunity response in broiler chickens. BMC Vet Res. 14: 249. doi: 10.1186/s12917-018-1578-x.

Davis AJ, Myburgh JG. 2016. Investigation of stillbirths, perinatal mortality and weakness in beef calves with low-selenium whole blood concentrations. J. S. Afr. Vet. Assoc. 87: 1-6. http://dx.doi.org/10.4102/jsava.v87i1.1336

Davis TZ, Stegelmeier BL, Panter KE, Cook D, Gardner DR, Hall JO. 2012. Toxicokinetics and pathology of plant-associated acute selenium toxicosis in steers. Journal of Veterinary Diagnostic Investigation. 24: 319–327 DOI: 10.1177/1040638711435407

Delano ML, Mischler SA, Underwood WJ. 2002. Biology and Diseases of Ruminants: Sheep, Goats, and Cattle. Laboratory Animal Medicine. 519–614. doi: 10.1016/B978-012263951-7/50017-X.

de Paiva Ferreiraa AV, Cominotted A, Ladeiraa MM, Casagrandea DR, Teixeiraa PD, van Cleef E, Ezequielc J, Castagninod P, Neto ORM. 2020. Feedlot diets with soybean oil, selenium and vitamin E alters rumen metabolism and fatty acids content in steers. Animal Feed Science and Technology. 260: 114362

https://doi.org/10.1016/j.anifeedsci.2019.114362

Deger Y, Mert H, Mert N, Yur F, Kozat S, Yoruk I, Sel T. 2008. Serum selenium, vitamin E, and sialic acids concentrations in lambs with white muscle disease. Biol. Trace Elem. Res. 121: 39-43.

Delesalle C, de Bruijn M, Wilmink S. Vandendriessche H, Mol G.,Boshuizen B, Plancke L, Grinwis G. 2017. White muscle disease in foals: focus on selenium soil content. A case series. BMC Vet Res 13: 121. https://doi.org/10.1186/s12917-017-1040-5

Dersjant-Li Y, Peisker M. 2010. Utilization of stereoisomers from alpha-tocopherol in livestock animals. J. Anim. Physiol. Anim. Nutr. (Berl.) 94: 413–421.

Desta B, Maldonado G, Reid H, Puschner B, Maxwell J, Agasan A, Humphreys L, Holt, T. 2011. Acute selenium toxicosis in polo ponies. Journal of Veterinary Diagnostic Investigation. 23: 623-628. doi:10.1177/1040638711404142

Dhillon KS, Dhillon SK. 1991. Selenium toxicity in soils, plants and animals in some parts of Punjab, India. International J. Environ. Stud. 37: 15-24.

Dhillon KS, Dhillon KS, Srivastava AK, Gill BS, Singh J. 1990. Experimental chronic selenosis in buffalo calves. Indian J. Anim. Sci. 60: 532-533.

Donnelly CG, Burns E, Easton-Jones CA, Katzman S, Stuart R, Cook SE, Finno CJ. 2021. Safety and efficacy of subcutaneous alpha-tocopherol in healthy adult horses. Equine Vet Educ.33 :215-219. doi: 10.1111/eve.13308.

Eger SD, Drori D, Kadoori I, Miller N, Schindler H. 1985. Effects of Selenium and Vitamin E on Incidence of Retained Placenta. Journal of Dairy Science. 68: 2119-2122. https://doi.org/10.3168/jds.S0022-0302(85)81077-8

EL-Deeb WM. 2010. Ascorbate-glutathion affiliation and the treatment of nutritional muscular dystrophy in lambs with special reference to the oxidative stress. cercetări agronomice în moldova. 9: 76-88.

El-Neweehy TK, Abdel-Rahman HA, AlQarawi AA. 2001. Some studies on nutritional muscular dystrophy in Qassim region in Saudi Arabia. Effect of administration of Vitamin E-selenium preparation to pregnant ewes on serum muscle-specific enzymes in their lambs. Small Ruminant Research. 41: 87-89

El-Neweehy TK, Al-Qarawi AA, Abdel-Rahman HA. 2020. Some studies on Stiff Lamb Disease in Qassim region in Saudi Arabia. 1: Enzymatic profile in free, subclinically and clinically affected lambs both before and after treatment with vitamin E and selenium preparation. Small Ruminant Research 35: 219-223. https://doi.org/10.1016/S0921-4488(99)00100-5

Elsasser TH, Kahl S, Lebold KM, Traber MG, Shaffer J, Li CJ, Block S. 2013. Short-term alpha- or gamma-delta-enriched tocopherol oil supplementation differentially affects the expression of proinflammatory mediators: Selective impacts on characteristics of protein tyrosine nitration in vivo. Vet. Sci. Dev. 3: 28-38. https://doi.org/10.4081/vsd.2013.4703

Enjalbert F, Lebreton P, Salat O. 2006. Effects of copper, zinc and selenium status on performance and health in commercial dairy and beef herds: Retrospective study. J Anim Physiol Anim Nutr (Berl).90:459-66. doi: 10.1111/j.1439-0396.2006. 00627.x.

Erdoğan S, Karadaş F, Yılmaz A, Karaca S. 2017. The effect of organic selenium in feeding of ewes in late pregnancy on selenium transfer to progeny. R. Bras. Zootec., 46: 147-155. https://doi.org/10.1590/S1806-92902017000200010

Eulogio GLJ, Hugo CV, Antonio CN, Alejandro CI, Juan MQ. 2012. Effects of the selenium and vitamin E in the production, physicochemical composition and somatic cell count in milk of Ayrshire cows. J. Anim. Vet. Adv. 11:687–691. DOI:10.3923/javaa.2012.687.691

European Commission. 2021. Commission Implementing Regulation (EU) 2021/1165 of 15 July 2021 authorising certain products and substances for use in organic production and establishing their lists. Off J Eur Communities. L 253:13–48.

Fan AM. Kizer KW. 1990. Selenium Nutritional, Toxicologic, and Clinical Aspects. West J Med. 153:160-167.

Ferrari L, Cattaneo DMIR, Abbate R, Manoni M, Ottoboni M, Luciano A, von Holst C. Pinotti L. 2023. Advances in selenium supplementation: From selenium-enriched yeast to potential selenium-enriched insects, and selenium nanoparticles. Animal Nutrition. Volume 14: 193-203. https://doi.org/10.1016/j.aninu.2023.05.002

Ferreira GM, Petzer IM. 2019. Injectable organic and inorganic selenium in dairy cows - Effects on milk, blood and somatic cell count levels. Onderstepoort J Vet Res. 86: e1-e8. doi: 10.4102/ojvr. v86i1.1664.

Fleming GA. 1980. Essential micronutrients II: iodine and selenium. In B. E. Davies, ed., Applied soil trace elements. John Wiley and Sons, New York.

Floor GH, Román-Ross G. 2012. Selenium in volcanic environments: A review Applied Geochemistry. 27: 517-531. https://doi.org/10.1016/j.apgeochem.2011.11.010

Gardiner MR. 1966. Chronic selenium toxicity studies in sheep. Aust Vet J.42: 442–448.

Gashu D, Lark RM, Milne AE, Amede T, Bailey EH, Chagumaira C, Dunham SJ, Gameda S, Kumssa DB, Mossa AW, Walsh MG, Wilson L, Young SD, Ander EL, Broadley MR, Joy EJM, McGrath SP. 2020. Spatial prediction of the concentration of selenium (Se) in grain across part of Amhara Region, Ethiopia. Science of the Total Environment. 2020; 733: 139231.

Gebreeyessus GD, Zewge F. 2019. A review on environmental selenium issues. SN Applied Sciences 1:55 | https://doi.org/10.1007/s42452-018-0032-9.

Giadinis N, Loukopoulos P, Petridou E, Filioussis G. 2012. Abortions in Ruminants Attributed to Selenium Deficiency. Journal of Comparative Pathology 146: 72. DOI: 10.1016/j.jcpa.2011.11.108

Gill H, Walker GP. 2008. Selenium, immune function and resistance to viral infections. June 2008. Nutrition & Dietetics. 65: S41 - S47. DOI:10.1111/j.1747-0080.2008. 00260.x

Grewal DK, Randhawa SNS, Randhawa CS. 2016. Chronic selenosis in dairy animal--a study of clinical observations and haematological profile. Intas Polivet. 17: 44-48.

Grilli E, Gallo A, Fustini M, Fantinati P, Piva A. 2013. Microencapsulated sodium selenite supplementation in dairy cows: effects on selenium status. Animal. 7: 1944–1949 .doi:10.1017/S1751731113001547

Gupta U.C. Gupta S.C. 2000. Selenium in soils and crops, its deficiencies in livestock and humans: Implications for management, Communications in Soil Science and Plant Analysis, 31: 1791-1807. DOI: 10.1080/00103620009370538

Gupta UC, Winter KA. 2011. Effect Of Selenate Vs. Selenite Forms Of Selenium In Increasing The Selenium Concentration In Forages And Cereals. Canadian Journal of Soil Science. 69: 885-888. https://doi.org/10.4141/cjss89-090

Haga S, Ishizaki H, Roh S. 2021. The Physiological Roles of Vitamin E and Hypovitaminosis E in the Transition Period of High-Yielding Dairy Cows. Animals (Basel). 11(1088) :1-23. doi: 10.3390/ani11041088.

Haga S, Miyaji M, Nakano M, Ishizaki H, Matsuyama H, Katoh K, Roh S. 2018. Changes in the expression of α-tocopherol–related genes in liver and mammary gland biopsy specimens of peripartum dairy cows. J. Dairy Sci. 101: 5277–5293. doi: 10.3168/jds.2017-13630.

Halliwell B. 2007. Biochemistry of oxidative stress. Biochem. Soc. Trans. 35: 1147–1150. doi: 10.1042/BST0351147.

Hansen JC, Deguchi Y. 1966. Selenium and fertility in animals and man--a review. Acta Vet Scand. 37: 19-30. doi: 10.1186/BF03548116.

Hariharan S, Dharmaraj S. 2020. Selenium and selenoproteins: It’s role in regulation of inflammation. Inflammo pharmacology. 28: 667–695.

Harrison JH, Hancock DD, Conrad HR. 1984. Vitamin E and Selenium for Reproduction of the Dairy Cow. J Dairy Sci. 67: 123-132. doi: 10.3168/jds.S0022-0302(84)81275-8.

Hartikainen H, Ekholm P, Piironen V, Xue T, Koivu T, Yli-Halla M. 1997. Quality of the ryegrass and lettuce yields as affected by selenium fertilization. Agr. Food Sci. Fin. 6: 381-387. https://doi.org/10.23986/afsci.72801

He L, He T, Farrar S, Ji L, Liu T. Ma X. 2017. Antioxidants Maintain Cellular Redox Homeostasis by Elimination of Reactive Oxygen Species. Cell Physiol Biochem. 44: 532-553. DOI: 10.1159/000485089

Hemingway R. 1999. The Influences of Dietary Selenium and Vitamin E Intakes on Milk Somatic Cell Counts and Mastitis in Cows. Vet Res Commun 23: 481–499. https://doi.org/10.1023/A:1006362422945

Hendawy AO, Sugimura S, Sato K, Mansour MM, Abd El-Aziz AH, Samir H, Islam MA, Bostami ABMR, Mandour AS, Elfadadny A, Ragab, RF, Abdelmageed HA, Ali AM. 2022. Effects of Selenium Supplementation on Rumen Microbiota, Rumen Fermentation, and Apparent Nutrient Digestibility of Ruminant Animals: A Review. Fermentation. 8:1-23. https://doi.org/10.3390/fermentation8010004

Herigstad RR, Whitehair CK, Olson OE. 1973. Inorganic and organic selenium toxicosis in young swine: comparison of pathologic changes with those in swine with vitamin E-selenium deficiency. J Am Vet Med Assoc. 34:1227–1238.

Higuchi T, Ichijo S, Osame S, Ohishi H. 1989. Studies on serum selenium and tocopherol in white muscle disease of foal. Nippon Juigaku Zasshi. 51: 52-59.

Hoque MN, Das ZC, Rahman ANMA, Hoque MM. 2016. Effect of administration of vitamin E, selenium and antimicrobial therapy on incidence of mastitis, productive and reproductive performances in dairy cows, Int J Vet Sci Med, 4: 63-70. DOI: 10.1016/j.ijvsm.2016.11.001

Hosnedlova B, Kepinska M, Skalickova S, Fernandez C, Ruttkay-Nedecky B, Malevu TD, Sochor J, Baron M, Melcova M, Zidkova J, Kizek R. 2017. A Summary of New Findings on the Biological Effects of Selenium in Selected Animal Species-A Critical Review. Int J Mol Sci. 18 (2209) :1-47. doi: 10.3390/ijms18102209

Hu J, Wang Z, Zhang L, Peng J, Huang T, Yang X, Jeong BR, Yang Q. 2022. Seleno-Amino Acids in Vegetables: A Review of Their Forms and Metabolism. Frontiers in Plant Science. 13, 804368. https://doi.org/10.3389/fpls.2022.804368

Hurley WL, Doane RM.1989. Recent Developments in the Roles of Vitamins and Minerals in Reproduction. J Dairy Sci. 72: 784-804. DOI:https://doi.org/10.3168/jds.S0022-0302(89)79170-0

Hutchinson LJ, Scholz RW, Drake TR. 1982. Nutritional myodegeneration in a group of Chianina heifers J Am Vet Med Assoc 181: 581–584.

Idamokoro EM, Andrew B, Falowo AB, Oyeagu CE, Afolayan AJ. 2020. Multifunctional activity of vitamin E in animal and animal products: A review. Animal Science Journal. 91: E13352. https://doi.org/10.1111/asj.13352

Izgi B, Gucer S, Jaćimović R. 2006. Determination of selenium in garlic (Allium sativum) and onion (Allium cepa) by electro thermal atomic absorption spectrometry Food Chemistry. 99: 630-637 https://doi.org/10.1016/j.foodchem.2005.08.033

Jamali M, Rezayazdi K, Sadeghi M, Zhandi M, Moslehifar P, Rajabinejad A, Fakooriyan H, Gholami H, Akbari R, Dindarlou MS. 2022. Effect of selenium on growth performance and blood parameters of Holstein suckling calves. Journal of Central European Agriculture. 23: 1-8. DOI: /10.5513/JCEA01/23.1.3360

James LF, James L S. 1984. Selenium Poisoning in Livestock. Rangelands. 6: 64–67.

Jaskowski JM. 1993. Effect of injecting combinations of selenium and vitamin E into cows before calving on the incidence of puereral disorders. Tierarztl Prax. 21:111–116.

Jovanović IB, VeliÄković M, Vuković D, Milanović S, ValÄić O, Gvozdić D. 2013. Effects of Different Amounts of Supplemental Selenium and Vitamin E on the Incidence of Retained Placenta, Selenium, Malondialdehyde, and Thyronines Status in Cows Treated with Prostaglandin F2α for the Induction of Parturition. J Vet Med. 2013: 867453. doi: 10.1155/2013/867453.

Julien WE, Conrad HR, Moxon AL. 1976. Selenium and vitamin E and incidence of retained placenta in parturient dairy cows. II. Prevention in commercial herds with prepartum treatment. J. Dairy Sci. 59:1960–1962. doi: 10.3168/jds.S0022-0302(76)84468-2.

Takahashi K, Newburger PE, Cohen HJ. 1986. Glutathione peroxidase protein. Absence in selenium deficiency states and correlation with enzymatic activity. J Clin Invest. 77: 1402–1404. doi: 10.1172/JCI112449

Kamada, H. 2017. Effects of selenium-rich yeast supplementation on the plasma progesterone levels of postpartum dairy cows. Asian-Australas. J. Anim. Sci. 30: 347–354.

Kao PT, Buss HL, McGrath SP, Darch T, Warren HE, Lee MRF. 2023. The uptake of selenium by perennial ryegrass in soils of different organic matter contents receiving sheep excreta. Plant Soil. 486: 639-659. doi: 10.1007/s11104-023-05898-8.

Karimi M, Ignasiak M, Chan B, Croft AK, Radom L, Schiesser CH, Pattison DI, Davies MJ. 2016. Reactivity of disulfide bonds is markedly affected by structure and environment: implications for protein modification and stability. Sci Rep 6: 38572. https://doi.org/10.1038/srep38572

Kasapidou E, Enser M, Wood JD, Richardson RI, Wilkinson RG, Sinclair LA. 2009. Influence of vitamin E supplementation and basal diet on the vitamin E status performance and tissue fatty acid concentration in lambs. Animal. 3: 516–526. doi: 10.1017/S1751731108003820

Kazi Tani LS, Dennouni-Medjati N, Toubhans B, Charlet L. 2020. Selenium Deficiency—From Soil to Thyroid Cancer. Applied Sciences. 10: 5368. https://doi.org/10.3390/app10155368

Kazzaz JA, Xu J, Palaia TA, Mantell L, Fein AM, Horowitz S. 1996. Cellular Oxygen Toxicity. Oxidant Injury Without Apoptosis. The Journal of Biological Chemistry. 271: 15182–15186.

Kesika P, Sivamaruthi BS, Thangaleela S, Bharathi M, Chaiyasut C. 2023. Role and Mechanisms of Phytochemicals in Hair Growth and Health. Pharmaceuticals. 16(2):206. https://doi.org/10.3390/ph16020206

Khan MZ, Ma Y, Xiao J, Chen T, Ma J, Liu S, Wang Y, Khan A, Alugongo GM, Cao Z. 2022. Role of Selenium and Vitamins E and B9 in the Alleviation of Bovine Mastitis during the Periparturient Period. Antioxidants. 11: 657. https://doi.org/10.3390/antiox11040657

Khanal DR, Knight AP. 2010. Selenium: Its Role In Livestock Health And Productivity. The Journal of Agriculture and Environment 11: 101-106

Khatti A, Mehrotra S, Patel PK, Singh G, Maurya VP, Mahla AS, Chaudhari RK, Das GK, Singh M, Sarkar M, Kumar H, Krishnaswamy N. 2017. Supplementation of vitamin E, selenium and increased energy allowance mitigates the transition stress and improves postpartum reproductive performance in the crossbred cow. Theriogenology. 104: 142-148. doi: 10.1016/j.theriogenology.2017.08.014.

Kieliszek M, Bano I. 2022. Selenium as an important factor in various disease states - a review. EXCLI J. 5: 948-966. doi: 10.17179/excli2022-5137.

Kieliszek M. Seleniumâ»Fascinating 2019. Microelement, Properties and Sources in Food. Molecules. 24: 1298. doi: 10.3390/molecules24071298

Kilinc M, Kastal C, Okur E, Yildirim I. 2019. Evaluation of Serum Selenium and Erythrocyte Glutathione Peroxidase Levels in Patients with Recurrent Tonsillitis. Indian J Otolaryngol Head Neck Surg. 71: 188-191. doi: 10.1007/s12070-017-1207-1.

Kim JE, Ferruzzi MG, Campbell WW. 2016. Egg Consumption Increases Vitamin E Absorption from Co-Consumed Raw Mixed Vegetables in Healthy Young Men. J Nutr. 146: 2199-2205. doi: 10.3945/jn.116.236307.

Kim HS, Lee JM, Park SB, Jeong SG, Jung J K, Im KS.1997. Effect of vitamin E and selenium administration on the reproductive performance in dairy cows. Asian-Australasian Journal of Animal Sciences 10: 308-312.

https://doi.org/10.5713/ajas.1997.308

Kim Y. 2001. Comparative effects of high dietary levels of organic and inorganic selenium on selenium toxicity of growing-finishing pigs. ournal of Animal Science 79: 942-948. DOI:10.2527/2001.794942x

Kiremidjian-Schumacher L, Stotzky G. 1987. Selenium and immune responses. Environmental Research. 42: 277-303. https://doi.org/10.1016/S0013-9351(87)80194-9

Köseoğlu K, Ulusoy HI, Yilmaz E, Soylak M. 2020. Simple and sensitive determination of vitamin A and E in the milk and egg yolk samples by using dispersive solid phase extraction with newly synthesized polymeric material. Journal of Food Composition and Analysis. 90: 103482. https://doi.org/10.1016/j.jfca.2020.103482

Kryukov GV, Castellano S, Novoselov SV, Lobanov AV, Zehtab O, Guigó R, Gladyshev VN. 2003. Characterization of Mammalian Selenoproteomes. Science. 300: 1439–1443.

Kuhn MJ. 2023. Review: The Potential Role of Vitamin E Analogs as Adjunctive Antioxidant Supplements for Transition Cows. Dairy. 4: 285-299. https://doi.org/10.3390/dairy4020020

Kumagai H, Chaipan Y. 2004. Changes of vitamin E status of periparturient dairy cows and newborn calves. Anim. Sci. J. 75: 541–547.

LeBlanc SJ, Duffield TF, Leslie KE, Bateman KG, TenHag J, Walton JS, Johnson WH. 2002. The effect of prepartum injection of vitamin E on health in transition dairy cows. J Dairy Sci. 85: 1416-26. doi: 10.3168/jds.S0022-0302(02)74209-4.

Lewis ED, Meydani SN, Wu D. 2019. Regulatory role of vitamin E in the immune system and inflammation. IUBMB Life. 71: 487-494. doi: 10.1002/iub.1976.

Liu K, Ge S, Luo H, Yue D, Yan L. 2013. Effects of dietary vitamin E on muscle vitamin E and fatty acid content in Aohan fine-wool sheep. J Animal Sci Biotechnol. 4: 21 . https://doi.org/10.1186/2049-1891-4-21

Liu Q, Lanari MC, Schaefer DM. 1995. A review of dietary vitamin E supplementation for improvement of beef quality. J Anim Sci. 73: 3131-3140. doi: 10.2527/1995.73103131x.

Maas J, Hoar BR, Myers DM, Tindall J, Puschner B. 2008. Vitamin E and Selenium Concentrations in Month-Old Beef Calves. Journal of Veterinary Diagnostic Investigation. 20: 86-89. doi:10.1177/104063870802000118

Maiorano G, Cavone C, McCormick RJ, Ciarlariello A, Gambacorta M, Manchisi A. 2007. The effect of dietary energy and vitamin E administration on performance and intramuscular collagen properties of lambs. Meat Science 76:182-188. doi: 10.1016/j.meatsci.2006.11.001.

Maxie MG. 2007. Pathology of Domestic Animals. editor. Jubb, Kennedy, and Palmer’s. 5th ed. Philadelphia: Saunders/Elsevier.

McDowell LR, Williams SN, Hidiroglou N, Njeru CA, Hill GM, Ochoa L, Wilkinson NS. 1996. Vitamin E supplementation for the ruminant. Anim Feed Sci Technol. 60: 273–296. doi:10.1016/0377-8401(96)00982-0.

McKenzie CM, Al-Dissi AN. 2017. Accidental selenium toxicosis in lambs. Can Vet J. 58: 1110-1112.

Mehdi Y, Dufrasne I. 2016. Selenium in Cattle: A Review. Molecules. 21: 545. doi: 10.3390/molecules21040545.

Mézes M, Balogh K. 2009. Prooxidant mechanisms of selenium toxicity—A review. Acta Biol. Szeged. 53: 15–18.

Mikulková K, Kadek R, Filípek J, Illek J. 2020. Evaluation of oxidant/antioxidant status, metabolic profile and milk production in cows with metritis. Ir Vet J. 73: 8. https://doi.org/10.1186/s13620-020-00161-

Milewski S, Sobiech P, Błażejak-Grabowska J, Wójcik R, Żarczyńska K, Miciński J, Ząbek K. 2021. The Efficacy of a Long-Acting Injectable Selenium Preparation Administered to Pregnant Ewes and Lambs. Animals. 11: 1076. https://doi.org/10.3390/ani11041076

Miltko R, Rozbicka-Wieczorek JA, Wiesyk E, Czauderna M. 2016. The influence of different chemical forms of selenium added to the diet including carnosic acid, fish oil and rapeseed oil on the formation of volatile fatty acids and methane in the rumen, and fatty acid profiles in the rumen content and muscles of lambs. Acta. Vet. Beograd. 66: 373–391. 10.1515/acve-2016-0032

Miranda S, Wang YJ, Purdie NG, Osborne VR, Coomber BL, Cant JP. 2009. Selenomethionine stimulates expression of glutathione peroxidase 1 and 3 and growth of bovine mammary epithelial cells in primary culture. J. Dairy Sci. 92: 2670–2683. doi: 10.3168/jds.2008-1901.

Misra S, Boylan M, Selvam A, Spallholz JE, Björnstedt M. 2015. Redox-active selenium compounds--from toxicity and cell death to cancer treatment. Nutrients. 7: 3536-3556. doi: 10.3390/nu7053536.

Mohd Zaffarin AS, Ng SF, Ng MH, Hassan H, Alias E. 2020. Pharmacology and Pharmacokinetics of Vitamin E: Nanoformulations to Enhance Bioavailability. Int J Nanomedicine. 8: 15:9961-9974. doi: 10.2147/IJN.S276355.

Mora ML, Durán P, Acuña J, Cartes P, Demanet R, Gianfreda L. 2015. Improving selenium status in plant nutrition and quality. J. Soil Sci. Plant Nutr. 15: 486-503 http://dx.doi.org/10.4067/S0718-95162015005000041.

Morgante M, Beghelli D, Pauselli M, Dall’ara P, Capuccella M, Ranucci S. 1999. Effect of Administration of Vitamin E and Selenium During the Dry Period on Mammary Health and Milk Cell Counts in Dairy Ewes. J Dairy Sci. 82: 623–631. doi: 10.3168/jds.S0022-0302(99)75276-8.

Moriguchi S, Kaneyasu M. 2003. Role of Vitamin E in Immune System. J. Clin. Biochem. Nutr. 34, 97-109.

National Research Council (NRC). 1985. Nutrient Requirements of Sheep From Nutrient Requirements of Sheep, Sixth Revised Edition (1985), Subcommittee on Sheep Nutrition, Committee on Animal Nutrition, Board on Agriculture, Nation Research Council, National Academy Press, Washington, D.C.

National Research Council. Nutrient (2001). Nutrient Requirements of Dairy Cattle: Seventh Revised Edition; The National Academy Press: Washington, DC, USA, 2001; 405p

Naziroglu M, Aksakal M, Cay M, Celik S. 1997. Effects of vitamin E and selenium on some rumen parameters in lambs. Acta Vet. Hung. 45: 447–456. 10.1016/S0093-691X(97)00016-2

Niero G, Visentin G, Censi S, Righi F, Manuelian CL, Formigoni A, Mian C, Bérard J, Cassandro M, Penasa M, Moore S, Costa A, De Marchi M. 2023. Invited review: Iodine level in dairy products—A feed-to-fork overview. J. Dairy Sci. 106: 2213-2229. https://doi.org/10.3168/jds.2022-22599

Niki E. 2015. Evidence for beneficial effects of vitamin E. Korean J Intern Med. 30: 571-579. doi: 10.3904/kjim.2015.30.5.571.

Niwińska B, Andrzejewski M. 2017: Effects of selenium supplement forms on the diet–cow–calf transfer of selenium in Simmental cattle. Czech J. Anim. Sci. 62: 201–210. doi: 10.17221/86/2016-CJAS

O’Toole D, Raisbeck MF. 1995. Pathology of experimentally induced chronic selenosis (alkali disease) in yearling cattle. J Vet Diagn Invest. 7: 364–373.

Oldfield JE, Muth OH, Schubert JR. 1960. Selenium and Vit. E as Related to Growth and White Muscle Disease in Lambs. Proceedings of the Society for Experimental Biology and Medicine. 103: 799-800. doi:10.3181/00379727-103-25674

Oltramari CE, Pinheiro MG, de Miranda MS, Arcaro JRP, Castelani L, Toledo LM, Ambrósio LA, Leme PR, Manella MQ, Arcaro Jr I. 2014. Selenium Sources in the Diet of Dairy Cows and Their Effects on Milk Production and Quality, on Udder Health and on Physiological Indicators of Heat Stress, Italian Journal of Animal Science. 13: 1. DOI: 10.4081/ijas.2014.2921

Politis I, Theodorou G, Lampidonis AD, Kominakis A, Baldi A. 2012. Short communication: Oxidative status and incidence of mastitis relative to blood α-tocopherol concentrations in the postpartum period in dairy cows. J. Dairy Sci. 95: 7331–7335. doi: 10.3168/jds.2012-5866.

Politis I. 2012. Reevaluation of vitamin E supplementation of dairy cows: bioavailability, animal health and milk quality. Animal. 6: 1427-1434. https://doi.org/10.1017/S1751731112000225

Pontes GC, Monteiro PL Jr, Prata AB, Guardieiro MM, Pinto DA, Fernandes GO, Wiltbank MC, Santos JE, Sartori R. 2015. Effect of injectable vitamin E on incidence of retained fetal membranes and reproductive performance of dairy cows. J Dairy Sci. 98: 2437-49. doi: 10.3168/jds.2014-8886.

Poole SC, Bohman VR,Young JA. 1989. Review Of Selenium In Soils, Plants, And Animals In Nevada. The Great Basin Naturalist. 49: 201-213.

Prasad R, Shivay YS. 2022. Selenium in human and animal nutrition and need for selenium fertilization of crops. Journal of Agricultural Sciences. 92: 431–437. https://doi.org/ 10.56093/ijas.v92i4.123862

Pritee G, Upadhyay AK, Gangwar NK, Rajput MKS. 2008. Relationship of mineral and vitamin supplementation with mastitis. Vet World. 1:103–104.

Qu Y, Fadden AN, Traber MG, Bobe G. 2014. Potential risk indicators of retained placenta and other diseases in multiparous cows. J. Dairy Sci. 297: 4151–4165. doi: 10.3168/jds.2013-7154.

Qu Y, Elsasser TH, Kahl S, Garcia M, Scholte CM, Connor EE, Schroeder GF, Moyes KM. 2018. The effects of feeding mixed tocopherol oil on whole-blood respiratory burst and neutrophil immunometabolic-related gene expression in lactating dairy cows. J. Dairy Sci. 101: 4332–4342.

Radostits OM, Gay CC, Blood DC, Hinchcliff KW. 2000. Veterinary Medicine: A Textbook of the Diseases of Cattle, Sheep, Pigs, Goats and Horses. 9th ed. WB Saunders; London, UK.

Radostits OM, Gay CC, Hinchcliff K W, Constable PD. 2007. Veterinary Medicine: A Textbook of the Disease of Cattle, Sheep, Pigs, Goats and Horses, 10nth ed. Saunders Elseveir,1746.

Raisbeck MF. 2020. Selenosis in Ruminants. Vet Clin Food Anim. 36: 775–789 https://doi.org/10.1016/j.cvfa.2020.08.013

Raisbeck MF, Dahl ER, Sanchez DA, Belden EL, O'Toole D. 1993. Naturally occurring selenosis in Wyoming. J Vet Diagn Invest 5: 84–87.

Raisbeck MF. 2000. Selenosis. Vet Clin North Am Food Anim Pract. 16: 465-80. doi: 10.1016/s0749-0720(15)30081-5.

Ramadan SGA, Mahboub, HDH, Helal MAY, Sallam MA. 2018. Effect of Vitamin E and Selenium on Performance and Productivity of Goats. International Journal of Chemical and Biomedical Science. 4: 16-22.

Rayman MP. 2020. Selenium intake, status, and health: a complex relationship. Hormones (Athens). 19: 9-14. doi: 10.1007/s42000-019-00125-5.

Razaghi A, Poorebrahim M, Sarhan D, Bjornstedt M. 2021. Selenium stimulates the antitumour immunity: Insights to future research. European Journal of Cancer 155 : 256-267. DOI:https://doi.org/10.1016/j.ejca.2021.07.013

Reczyńska D, Witek B, Jarczak J, Czopowicz M, Mickiewicz M, Kaba J, Bagnicka E. 2019. The impact of organic vs. inorganic selenium on dairy goat productivity and expression of selected genes in milk somatic cells. Journal of Dairy Research. 86: 48-54. doi:10.1017/S0022029919000037

Reis LSLS, Chiacchio SB, Pardo PE, Oba E, Giuffrida R, Frazatti-Gallina NM. 2008. Selenium Supplementation Enhances Weight Gain In Cattle. Arch. Zootec. 57 : 271-274.

Reiter RJ, Melchiorri D, Sewerynek E, Poeggeler B, Barlow-Walden L, Chuang J, Ortiz GG, Castroviejo DA. 1995. A review of the evidence supporting melatonin's role as an antioxidant. Journasl of Pineal Research. 18: 1-11. https://doi.org/10.1111/j.1600-079X.1995.tb00133.x

Salles MSV, Samóra TS, Della Libera AMMPA, Netto AS, Roma Jr, LC, Blagitz MG, El Faro L, Souza FN, Batista CF, Salles FA , de Freitas JE. 2022. Selenium and vitamin E supplementation ameliorates the oxidative stress of lactating cows. Livestock Science. 255: 104807. https://doi.org/10.1016/j.livsci.2021.104807

Santos S, Ungureanu G, Boaventura R, Botelho C. 2015. Selenium contaminated waters: An overview of analytical methods, treatment options and recent advances in sorption methods. Sci Total Environ. 15:246-260. https://doi.org/10.1016/j.scitotenv.2015.03.107

Schinwald M, Creutzinger K, Keunen A, Winder CB, Haley D. Renaud DL. 2022. Predictors of diarrhea, mortality, and weight gain in male dairy calves. J. Dairy Sci. 105: 5296–5309 https://doi.org/10.3168/jds.2021-21667

Schöne F, Steinhöfel O, Weigel K, Bergmann H, Herzog E, Dunkel S, Kirmse R, Leiterer M. 2013. Selenium in feedstuffs and rations for dairy cows including a view of the food chain up to the consumer. J. Verbr. Lebensm. 8:271–280. DOI 10.1007/s00003-013-0827-y

Schoonen WG, Wanamarta AH, van der Klei-van Moorsel JM, Jakobs C, Joenje H. 1990. Respiratory failure and stimulation of glycolysis in Chinese hamster ovary cells exposed to normobaric hyperoxia,†Journal of Biological Chemistry. 265 :1118–1124.

Schrauzer GN. 2000. Selenomethionine: A Review of Its Nutritional Significance, Metabolism and Toxicity1 The Journal of Nutrition. 130: 1653-1656 https://doi.org/10.1093/jn/130.7.1653

Semenenko MP, Grin VA, Kuzminov EV, Semenenko KA, Nepshekueva TS, Chernykh YO. 2021. Pharmacological therapy of white muscle disease in lambs with selenium preparations in a comparative aspect IOP Conf. Series: Earth and Environmental Science 677 (2021) 042020 IOP Publishing doi:10.1088/1755-1315/677/4/042020

Sengupta A, Lichti UF, Carlson BA, Ryscavage AO, Gladyshev VN, Yuspa, SH. Dolph L, Hatfield DL. (2010) Selenoproteins Are Essential for Proper Keratinocyte Function and Skin Development. PLoS ONE 5(8): e12249. doi:10.1371/journal.pone.0012249

Sgoifo Rossi CA, Compiani R, Baldi G, Muraro M, Marden JP, Rossi R, Pastorelli G, Corino C, Dell'Orto V. 2017. Organic selenium supplementation improves growth parameters, immune and antioxidant status of newly received beef cattle. Journal of Animal and Feed Sciences. 26: 100-108. https://doi.org/10.22358/jafs/70765/2017

Sharma N, Maiti SK. 2005. Effect of dietary supplementation of vitamin E and Selenium in subclinical mastitis in dairy cows. Indian J. Vet. Med. 25: 76–79.

Sharma S, Kaur N, Kaur S, Nayyar H. 2017. Selenium as a nutrient in biostimulation and biofortification of cereals. Ind J Plant Physiol. 22: 1–15 DOI 10.1007/s40502-016-0249-9.

Shastak Y, Obermueller-Jevic U, Pelletier WA. 2023. Century of Vitamin E: Early Milestones and Future Directions in Animal Nutrition. Agriculture. 1:1526. https://doi.org/10.3390/agriculture13081526

Shrimali RK, Irons RD, Carlson BA, Sano Y, Gladyshev VN, Park JM, Hatfield DL. 2008. Selenoproteins mediate T cell immunity through an antioxidant mechanism. J Biol Chem. 283: 20181-20185. doi: 10.1074/jbc.M802559200.

Smith KL, Harrison JH, Hancock DD, Todhunter DA, Conrad HR. 1984. Effect of vitamin E and selenium supplementation on incidence of clinical mastitis and duration of clinical symptoms. J Dairy Sci.67: 1293-300. doi: 10.3168/jds.S0022-0302(84)81436-8.

Smyth JB, Wang JH, Barlow RM, Humphreys DJ, Robins M, Stodulski JB. 1990. Experimental acute selenium intoxication in lambs. J Comp Pathol. 102:197–209.

Sobiech P, Żarczyńska K. 2020. The influence of selenium deficiency on chosen biochemical parameters and histopathological changes in muscles of goat kids. Polish Journal of Veterinary Sciences. 23: 267–279. DOI 10.24425/pjvs.2020.133642

Song Y, Wang H, Sun R, Chang J, Tang J, Bai Y, Xia C. 2023. Serum Metabolic Characterization of Vitamin E Deficiency in Holstein Cows during the Transition Period Based on Proton Nuclear Magnetic Resonance Spectroscopy. Animals. 13: 2957. https://doi.org/10.3390/ani13182957

SordilloL M. Aitken SL. 2009. Impact of oxidative stress on the health and immune function of dairy cattle. Vet. Immunol. Immunop. 128:104-109.

Spallholz JE. 1994. On the nature of selenium toxicity and carcinostatic activity. Free Radical Bio Med. 17:45–64.

Spears JW, Weiss WP. 2008. Role of antioxidants and trace elements in health and immunity of transition dairy cows. Vet. J. 176: 70-76.

Spears JW. 2000. Micronutrients and immune function in cattle. Proc Nutr Soc. 59: 587–594.

Stadtman ER, Levine RL. 2010. Protein Oxidation. Ann Ny Acad Sci. 899: 191–208. doi: 10.1111/j.1749-6632.2000.tb06187.x

Steinshamn H, Leiber F. 2023. Revision of Vitamin E recommendations for dairy cows in organic agriculture: a review-based approach. Biological Agriculture & Horticulture. 39: 223–246. https://doi.org/10.1080/01448765.2023.2200204

Sterndale S, Broomfield S, Currie A, Hancock S, Kearney GA, Lei J, Liu S, Lockwood A, Scanlan V, Smith G, Thompson AN. 2018. Supplementation of Merino ewes with vitamin E plus selenium increases α-tocopherol and selenium concentrations in plasma of the lamb but does not improve their immune function. Animal. 12: 998–1006. doi:10.1017/S1751731117002300

Sunde RA, Selenium. In: Ross AC, Caballero B, Cousins RJ, Tucker KL, Ziegler TR, editors. Modern Nutrition in Health and Disease. 11th ed. Lippincott Williams & Wilkins; Philadelphia, PA, USA: 2012. pp. 225–237.

Suttle NF. 2010. Mineral Nutrition of Livestock. 4th ed. British Library; London, UK: 2010.

Tapiero H, Townsend DM, Tew KD. 2003. The antioxidant role of selenium and seleno-compounds. Biomed Pharmacother. 2003 57: 134-44. doi: 10.1016/s0753-3322(03)00035-0

Tinggi U. 2008. Selenium: its role as antioxidant in human health. Environ Health Prev Med. 13:102-108. doi: 10.1007/s12199-007-0019-4

Tiwary AK, Stegelmeier BL, Panter KE, James LF, Hall JO.2006. Comparative toxicosis of sodium selenite and selenomethionine in lambs. J Vet Diagn Invest 18:61–70. DOI: 10.1177/104063870601800108

Toro-Román V, Bartolomé I, Siquier-Coll J, Robles-Gil MC, Muñoz D, Maynar-Mariño M. 2022. Analysis of Intracellular and Extracellular Selenium Concentrations: Differences According to Training Level. Nutrients. 14:1857. doi: 10.3390/nu14091857.

Ullah H, Khan RU, Tufarelli V, Laudadio V. 2020. Selenium: An Essential Micronutrient for Sustainable Dairy Cows Production. Sustainability. 12:10693. https://doi.org/10.3390/su122410693

Ullrey DE, Brady PS, Whetter PA, Ku PK, Magee WT. 1977. Selenium Supplementation of Diets for Sheep and Beef Cattle. Journal of Animal Science. 45: 559–565, https://doi.org/10.2527/jas1977.453559x

Van Emon M, Sanford C, McCoski S. 2020. Impacts of Bovine Trace Mineral Supplementation on Maternal and Offspring Production and Health. Animals (Basel). 10 :2404. doi: 10.3390/ani10122404.

van Kempen TATG, Benítez Puñal S, Huijser J, De Smet S. 2022. Tocopherol more bioavailable than tocopheryl-acetate as a source of vitamin E for broilers. PLoS One. 17(5):e0268894. doi: 10.1371/journal.pone.0268894.

Velasquez-Pereira J, McDowell LR, Risco CA, Prichard D, Martin FG, Calhoun MC, Williams SN, Wilkinson NS, Ogebe P. 1998. Effects on performance, tissue integrity, and metabolism of vitamin E supplementation for beef heifers fed a diet that contains gossypol. J Anim Sci. 76: 2871-2884. doi: 10.2527/1998.76112871x.

Vorobiev VI, Vorobiev DV, Shcherbakova EN, Zakharkina NI Polkovnichenko AP. 2013 Physiological mechanism of the influence of microelements missing in the environment and feed on the state of erythron the processes of free radical oxidation and the productivity of ruminants. Fundamental research 11: 461-464

Wahyono T, Wahyuningsih R, Setiyawan AI, Pratiwi D, Kurniawan T, Hariyadi S, Sholikin MM, Jayanegara A, Triyannanto E, Febrisiantosa A. 2023. Effect of dietary selenium supplementation (organic and inorganic) on carcass characteristics and meat quality of ruminants: a meta-analysis. Journal of Animal and Feed Sciences. 32: 127-137. https://doi.org/10.22358/jafs/157555/2023

Wang D, Jia D, He R, Lian S, Wang J, Wu R. 2021. Association Between Serum Selenium Level and Subclinical Mastitis in Dairy Cattle. Biol Trace Elem Res. 199: 1389–1396. https://doi.org/10.1007/s12011-020-02261-1

Weiss WP, Wyatt DJ. 2003. Effect of dietary fat and vitamin E on α-tocopherol in milk from dairy cows. J Dairy Sci. 86: 3582–3591. doi:10.3168/jds.S0022-0302(03)73964-2.

Weiss WP, Hogan JS, Smith KL, Hoblet KH. 1990. Relationships Among Selenium, Vitamin E, and Mammary Gland Health in Commercial Dairy Herds. Journal Dairy Sci. 73(2):381-90. doi: 10.3168/jds.S0022-0302(90)78684-5.

Weiss WP. 2003. Selenium nutrition of dairy cows: comparing responses to organic and inorganic selenium forms. pp 333-343 in Proc. 19th Alltech’s Nat. Annual Symp., Madison, WI, USA.

Whanger PD. 2002. Selenocompounds in plants and animals and their biological significance. Journal of the American College of Nutrition. 21 :223–232. doi:10.1080/07315724.2002.10719214

Wichtel JJ. 1998. A review of selenium deficiency in grazing ruminants Part 1: New roles for selenium in ruminant metabolism, New Zealand Veterinary Journal. 46: 47-52, DOI: 10.1080/00480169.1998.36055

Wilhelm A. 2010. Investigation of the Toxicity and Toxicokinetics of Selenium from the Accumulator Plant Symphyotrichum spathulatum (Western Mountain Aster) in Sheep. All Graduate Theses and Dissertations. 553. https://digitalcommons.usu.edu/etd/553

Wróbel M, Stipanuk MH, Nagahara N. 2011. Sulfur- and seleno-containing amino acids. Amino Acids. 41:1-2. doi: 10.1007/s00726-011-0930-2.

Wu X, Yao J, Yang Z, Yue W, Ren Y, Zhang C, Liu X, Wang H, Zhao X, Yuan S. 2011. Improved fetal hair follicle development by maternal supplement of selenium at nano size (Nano-Se) Livest. Sci. 142: 270–275. doi: 10.1016/j.livsci.2011.08.005.

Wulf DM, Morgan JB, Sanders SK, Tatum JD, Smith GC, Williams S. 1995. Effects of dietary supplementation of vitamin E on storage and caselife properties of lamb retail cuts. Journal of Animal Science 73: 399-405. doi: 10.2527/1995.732399x.

Xiao J, Khan MZ, Ma Y, Alugongo GM, Ma J, Chen T, Khan A, Cao Z. 2021. The Antioxidant Properties of Selenium and Vitamin E; Their Role in Periparturient Dairy Cattle Health Regulation. Antioxidants. 10: 1555. https://doi.org/10.3390/antiox10101555

Yaeger MJ, Neiger RD, Holler L, Fraser TL, Hurley DJ, Palmer IS. 1998. The Effect of Subclinical Selenium Toxicosis on Pregnant Beef Cattle. Journal of Veterinary Diagnostic Investigation. 10: 268-273. doi:10.1177/104063879801000307

Yang FL, Li XS. 2015. Role of antioxidant vitamins and trace elements in mastitis in dairy cows. J. Adv. Vet. Anim. Res. 2:1–9. doi: 10.5455/javar.2015.b48.

Zalewska M, Kapusta A, Kawecka-Grochocka E, Urbańska DM, Czopowicz M, Kaba J, Brzozowska P, Bagnicka E. 2022. Effect of Supplementation with Organic Selenium or Turmeric and Rosemary Mixture on Beta-Defensin Content in Goat Milk. Animals. 12: 2948. https://doi.org/10.3390/ani12212948

Zarczy’nska K, Sobiech P, Radwi´nska J, Rękawek W. 2013. Effects of selenium on animal health. J. Elementol. 18: 329–340. DOI: 10.5601/jelem.2013.18.2.12

Zened A, Troegeler-Meynadier A, Najar T, Enjalbert F. 2012. Effects of oil and natural or synthetic vitamin E on ruminal and milk fatty acid profiles in cows receiving a high-starch diet. J. Dairy Sci. 95 :5916–5926. http://dx.doi.org/ 10.3168/jds.2012-5326

Zhang Y, Xu Y, Chen B, Zhao B, Gao XJ. 2021. Selenium deficiency promotes oxidative stress-induced mastitis via activating the NF-κB and MAPK pathways in dairy cow. Biol. Trace Elem. Res. :1–11. doi: 10.1007/s12011-021-02882-0.

Zhao T, Luo H, Zhang Y, Liu K, Jia H, Chang Y, Jiao L, and Gao W. 2013. Effect of vitamin E supplementation on growth performance, carcass characteristics and intramuscular fatty acid composition of Longissimus dorsi muscle in Tan' sheep. Chilean J. Agric. Res. 73: 358-365. Chillán dic. 2013http://dx.doi.org/10.4067/S0718-58392013000400005

Zigo F, Vasil M, FarkaÅ¡ová Z, Zigová M, EleÄko J. 2017. Influence of selenium and vitamin e supplementation during pregnancy on udder health and milk quality in dairy cows at parturition. Potravinarstvo Slovak Journal of Food Sciences, 11: 58–64. https://doi.org/10.5219/694

Published

2024-05-06

How to Cite

Yanuartono, Y., Indarjulianto, S., & Paryuni, A. D. (2024). Peran Selenium dan Vitamin E pada Ruminansia: Ulasan Singkat: The Role of Selenium and Vitamin E in Ruminants: A Brief Review. Jurnal Ilmiah Ilmu-Ilmu Peternakan, 27(1), 9-37. https://doi.org/10.22437/jiiip.v27i1.31614