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Aguerre M.J., Capozzolo M.C., Lencioni P., Cabral C., Wattiaux M.A. (2016). Effect of quebracho-chestnut tannin extracts at 2 dietary crude protein levels on performance, rumen fermentation and nitrogen partitioning in dairy cows. J. Dairy Sci., 99: 4476–4486. Search in Google Scholar

Aragona K.M., Chapman C.E., Pereira A.B.D., Isenberg B.J., Standish R.B., Maugeri C.J., Cabral R.G., Erickson P.S. (2016). Prepartum supplementation of nicotinic acid: effects on health of the dam, colostrum quality and acquisition of immunity in the calf. J. Dairy Sci., 99: 3529–3538. Search in Google Scholar

Ávila S.C., Kozloski G.V., Orlandi T., Mezzomo M.P., Stefanello S. (2015). Impact of a tannin extract on digestibility, ruminal fermentation and duodenal flow of amino acids in steers fed maize silage and concentrate containing soybean meal or canola meal as protein source. J. Agric. Sci., 153: 943–953. Search in Google Scholar

Barreira J.C.M., Ferreira I.C.F.R., Oliveira M.B.P.P., Pereira J.A. (2008). Antioxidant activities of the extracts from chestnut flower, leaf, skins and fruit. Food. Chem., 107: 1106–1113. Search in Google Scholar

Bionaz M., Trevisi E., Calamari L., Librandi F., Ferrari A., Bertoni G. (2007). Plasma paraoxonase, health, inflammatory conditions and liver function in transition dairy cows. J. Dairy Sci., 90: 1740–1750. Search in Google Scholar

Brscic M., Cozzi G., Lora I., Stefani L.A., Contiero B., Ravarotto L., Gottardo F. (2015). Short communication: Reference limits for blood analytes in Holstein late-pregnant heifers and dry cows: Effects of parity, days relative to calving, and season. J. Dairy Sci., 98: 7886–7892. Search in Google Scholar

Cao Y., Zhang J., Yang W., Xia C., Zhang H-Y., Wang Y-H., Xu C. (2017). Predictive value of plasma parameters in the risk of postpartum ketosis in dairy cows. J. Vet. Res., 61: 91–95. Search in Google Scholar

Cieslak A., Szumacher-Strabel M., Stochmal A., Oleszek W. (2013). Plant components with specific activities against rumen methanogens. Anim., 7: 253–265. Search in Google Scholar

Conneely M., Berry D.P, Sayers R., Murphy J.P., Lorenz I., Doherty M.L., Kennedy E. (2013). Factors associated with the concentration of immunoglobulin G in the colostrum of dairy cows. Anim., 7: 1824–1832. Search in Google Scholar

Costa L.G, Giordano G., Furlong C.E. (2011). Pharmacological and dietary modulators of paraoxonase 1 (PON1) activity and expression: the hunt goes on. Biochem. Pharmacol., 81: 337–344. Search in Google Scholar

Devant M., Anglada A., Bach A. (2007). Effects of plant extract supplementation on rumen fermentation and metabolism in young Holstein bulls consuming high levels of concentrate. Anim. Feed. Sci. Technol., 137: 46–57. Search in Google Scholar

Dschaak C.M., Williams C.M., Holt M.S., Eun J.S., Youn A.J., Min B.R. (2011). Effects of supplementing condensed tannin extract on intake, digestion, ruminal fermentation and milk production of lactating dairy cows. J. Dairy Sci., 94: 2508–2519. Search in Google Scholar

Farid A.S., Honkawa K., Fath E.M., Nonaka N., Horii Y. (2013). Serum paraoxonase-1 as biomarker for improved diagnosis of fatty liver in dairy cows. BMC Vet. Res., 9: 73. Search in Google Scholar

Gulliksen S.M., Lie K. I., Sølverød L., Østeräs O. (2008). Risk factors associated with colostrum quality in Norwegian dairy cows. J. Dairy Sci., 91: 704–712. Search in Google Scholar

Hashemi M., Bahari A., Hashemzehi N., Moazeni-Roodi A., Shafieipour S., Bakhshipour A., Ghavami S. (2012). Serum paraoxonase and arylesterase activities in Iranian patients with non-alcoholic fatty liver disease. Pathophysiology, 19: 115–119. Search in Google Scholar

Hassanat F., Benchaar C. (2013). Assessment of the effect of condensed (acacia and quebracho) and hydrolysable (chestnut and valonea) tannins on rumen fermentation and methane production in vitro. J. Sci. Food Agric., 93: 332–339. Search in Google Scholar

Huang Q., Xiuli L., Guoqi Z., Tianming H.U., Yuxi W. (2018). Potential and challenges of tannins as an alternative to in-feed antibiotics for farm animal production. Anim. Nutr., 4: 137–150. Search in Google Scholar

Jafari H., Fatahnia F., Khatibjoo A., Taasoli G., Fazaeli H. (2018). Effect of oak acorn level on colostrum composition and plasma immunoglobulin G of late-pregnant goats and their kids. Anim., 12: 2300–2309. Search in Google Scholar

Jayanegara A., Goel G., Makkar H.P.S., Becker K. (2015). Divergence between purified hydrolysable and condensed tannin effects on methane emission, rumen fermentation and microbial population in vitro. Anim. Feed Sci. Technol., 209: 60–68. Search in Google Scholar

Kehoe S.I., Heinrichs A.J., Moody M.L., Jones C.M., Long M.R. (2011). Comparison of immunoglobulin G concentrations in primiparous and multiparous bovine colostrum. PAS, 27: 176–180. Search in Google Scholar

Klimes J, Bouska J., Bouda J., Dostálová M., Toth J. (1989). The effect of subclinical ketosis in dry cows on the composition of the colostrum and on health indicators in newborn calves. Vet. Med. (Praha), 34: 129–40. Search in Google Scholar

Lee S.D., Kim J.H., Jung H.J., Kim Y.H., Kim I.C., Kim S.B., Lim S.Y., Jung W.S., Lee S.H., Kim Y.J. (2013). The effect of ginger extracts on the antioxidant capacity and IgG concentrations in the colostrum and plasma of neo-born piglets and sows. Livest. Sci., 154: 117–122. Search in Google Scholar

Li Y., Ding H.Y., Wang X.C., Feng S.B., Li X.B., Wang Z., Liu G.W., Li X.W. (2016). An association between the level of oxidative stress and the concentrations of NEFA and BHBA in the plasma of ketotic dairy cows. J. Anim. Physiol. Anim. Nutr., 100: 844–851. Search in Google Scholar

Lin Y., Sun X., Hou X., Qu B., Gao X., Li Q. (2016). Effects of glucose on lactose synthesis in mammary epithelial cells from dairy cow. BMC Vet. Res., 12: 81. Search in Google Scholar

Liu H.W., Zhou D.W., Li, K. (2013). Effects of chestnut tannins on performance and antioxidative status of transition dairy cows. J. Dairy Sci., 96: 5901–5907. Search in Google Scholar

Makkar H.P.S. (2003). Effects and fate of tannins in ruminant animals, adaptation to tannins and strategies to overcome detrimental effects of feeding tannin-rich feeds. Small Rumin. Res., 49: 241–256. Search in Google Scholar

Malisan F., Brière F., Bridon J.M., Harindranath N., Mills F.C., Max E.E., Banchereau J., Martinez-Valdez H. (1996). Interleukin-10 induces immunoglobulin G isotype switch recombination in human CD40-activated naive B lymphocytes. J. Exp. Med., 183: 937–947. Search in Google Scholar

Mann S., Nydam D., Overton T. (2014). Dry cow feed strategies to control ketosis and colostrum quality. Manager., Nov (14): 23–24. Search in Google Scholar

McSweeney C.S., Palmer B., McNeill D.M., Krause D.O. (2001). Microbial interactions with tannins: nutritional consequences for ruminants. Anim. Feed Sci. Tech., 91: 83–93. Search in Google Scholar

Moeini M.M., Kiani A., Mikaeili E., Shabankareh, H.K. (2011). Effect of prepartum supplementation of selenium and vitamin E on serum Se, IgG concentrations and colostrum of heifers and on hematology, passive immunity and Se status of their offspring. Biol. Trace Elem. Res., 144: 529–537. Search in Google Scholar

Mueller-Harvey I. (2006). Unravelling the conundrum of tannins in animal nutrition and health. J. Sci. Food Agr., 86: 2010–2037. Search in Google Scholar

Nedić S., Vakanjac S., Samardzija M., Borozan S. (2019). Paraoxonase 1 in bovine milk and blood as marker of subclinical mastitis caused by Staphylococcus aureus. Res. Vet. Sci., 125: 323–332. Search in Google Scholar

Noro M., Wittwer F. (2012). Relationships between liver ureagenesis and gluconeogenesis in ruminants fed with a high nitrogen diet. Vet. Mex., 43: 143–154 Search in Google Scholar

Nowak W., Mikuła R., Kasprowicz-Potocka M., Ignatowicz M., Zachwieja A., Paczyńska K., Pecka E. (2012). Effect of cow nutrition in the far-off period on colostrum quality and immune response of calves. Bull. Vet. Inst. Pulawy., 56: 241–246. Search in Google Scholar

Panigrahi B., Pandey N., Pattanik A.K. (2004). Effect of pre-partum feeding of crossbred cows on growth performance, metabolic profile and immune status of calves. Asian-Australia J. Anim. Sci., 18: 661–665. Search in Google Scholar

Pantelić M., Jovanović L.J., Prodanović R., Vujanac I., Đurić M., Ćulafić T., Vranješ-Đjuric S., Korićanac G., Kirovski D. (2018). The impact of the chromium supplementation on insulin signalling pathway in different tissues and milk yield in dairy cows. J. Anim. Physiol. Anim. Nutr., 102: 41–55. Search in Google Scholar

Prodanović R., Korićanac G., Vujanac I., Djordjević A., Pantelić M., Romić S., Stanimirović Z., Kirovski D. (2016). Obesity-driven prepartal hepatic lipid accumulation in dairy cows is associated with increased CD36 and SREBP-1 expression. Res. Vet. Sci., 107: 16–19. Search in Google Scholar

Quiroz-Rocha F.G., LeBlanc J.S., Duffield F.T., Wood D., Leslie E.K., Jacobs M.R. (2009). Reference limits for biochemical and hematological analytes of dairy cows one week before and one week after parturition. Can. Vet. J., 50: 383-388. Search in Google Scholar

Rezai F., Zamani F., Vatankhah M. (2012). Effect of rumen undegradable protein (RUP) on colostrum quality and growth of Lori-Bakhtiari lambs. Glob. Vet., 8: 93–100. Search in Google Scholar

Senturk S., Cihan H., Kasap S., Mecitoglu Z., Temizel M. (2015). Effects on negative energy balance of tannin in dairy cattle. Uludag Univ. Vet. Fak. Derg., 34: 1–7. Search in Google Scholar

Sliwinski B.J., Soliva C.R., Machmüller A., Kreuzer M. (2002). Efficacy of plant extracts rich in secondary constituents to modify rumen fermentation. Anim. Feed Sci. Technol., 101: 101–114. Search in Google Scholar

Stockdale C.R., Smith C.J. (2004). Effect of energy and protein nutrition in late gestation on immunoglobulin G in the colostrum of dairy cows with varying body condition scores. Anim. Prod., 25: 176–179. Search in Google Scholar

Stojić M., Fratrić N., Kovačić M., Ilić V., Gvozdić D., Savić O., Đoković R., Valčić O. (2017). Brix refractometry of colostrum from primiparous dairy cows and new-born calf blood serum in the evaluation of failure of passive transfer. Acta Vet. Beograd., 67: 508–524. Search in Google Scholar

Thaipong K., Boonprakob U., Crosby K., Cisneros-Zevallos L., Byrne H.D. (2006). Comparison of ABTS, DPPH, FRAP and ORAC assays for estimating antioxidant activity from guava fruit extracts. J. Food Comp. Anal., 19: 669–675. Search in Google Scholar

Toghyani E., Moharrery A. (2015). Effect of various levels of dietary protein in transition period on colostrum quality and serum immunoglobulin concentration in Holstein cows and their newborn calves. Ann. Anim. Sci., 15: 493–504. Search in Google Scholar

Wu Y., Zhong L., Yu Z., Qi J. (2019). Anti-neuroinflammatory effects of tannic acid against lipopolysaccharide-induced BV2 microglial cells via inhibition of NF-κB activation. Drug Dev. Res., 80: 262–268. Search in Google Scholar

Zhong R.Z., Sun H.X., Liu H.W., Zhou D.W. (2014). Effects of tannic acid on Haemonchus contortus larvae viability and immune responses of sheep white blood cells in vitro. Parasite Immunol., 36: 100–106. Search in Google Scholar

Živković J., Zeković Z., Mujić I., Vidović S., Cvetković D., Lepojević Ž., Nikolić G., Trutić N. (2010). Scavenging capacity of superoxide radical and screening of antimicrobial activity of Castanea sativa Mill. Extracts. Czech. J. Food Sci. 1: 61–68. Search in Google Scholar

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