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Effects of body condition score on direct and indirect measurements of insulin sensitivity in periparturient dairy cows

Published online by Cambridge University Press:  20 May 2019

S. Saed Samii
Affiliation:
Division of Animal and Nutritional Sciences, West Virginia University, Morgantown, WV, USA
J. E. Rico
Affiliation:
Division of Animal and Nutritional Sciences, West Virginia University, Morgantown, WV, USA Department of Animal Science, Cornell University, Ithaca, NY, USA
A. T. Mathews
Affiliation:
Division of Animal and Nutritional Sciences, West Virginia University, Morgantown, WV, USA
A. N. Davis
Affiliation:
Division of Animal and Nutritional Sciences, West Virginia University, Morgantown, WV, USA
C. L. Orndorff
Affiliation:
Division of Animal and Nutritional Sciences, West Virginia University, Morgantown, WV, USA
L. O. Aromeh
Affiliation:
Division of Animal and Nutritional Sciences, West Virginia University, Morgantown, WV, USA
J. W. McFadden*
Affiliation:
Division of Animal and Nutritional Sciences, West Virginia University, Morgantown, WV, USA Department of Animal Science, Cornell University, Ithaca, NY, USA
*
E-mail: [email protected].
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Abstract

Reductions in insulin sensitivity in periparturient dairy cows develop as a means to support lactation; however, excessive mobilization of fatty acids (FA) increases the risk for peripartal metabolic disorders. Our objectives were to investigate the effect of prepartum body condition score (BCS) on systemic glucose and insulin tolerance, and to compare direct and indirect measurements of insulin sensitivity in peripartal lean and overweight dairy cows. Fourteen multiparous Holstein cows were allocated into two groups according to their BCS at day −28 prepartum: lean (n = 7; BCS ≤ 3.0) or overweight; (n = 7; BCS ≥ 4.0). Liver biopsies were performed on day −27, −14 and 4, relative to expected parturition. Intravenous insulin or glucose tolerances tests were performed following each liver biopsy. Relative to lean cows, overweight cows exhibited lower dry matter intake, lost more BCS and displayed increased plasma FA and β-hydroxybutyrate concentrations and elevated liver lipid content during peripartum. Glucose clearance rate was lower for all cows postpartum. Prepartum BCS had minimal effects on insulin and glucose tolerance; however, the ability of the cow to restore blood glucose levels following an insulin challenge was suppressed by increased BCS. Glucose-dependent parameters of insulin and glucose tolerance were not correlated with surrogate indices of insulin sensitivity. We conclude that prepartum BCS had minimal effect on systemic insulin sensitivity following parturition. The observed inconsistency between surrogate indices of insulin sensitivity and direct measurements of insulin and glucose tolerance adds support to growing concerns regarding their usefulness as tools to estimate systemic insulin action in periparturient cows.

Type
Research Article
Copyright
© The Animal Consortium 2019 

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Footnotes

a

Present address: Animal Nutrition Systems, Chandler, AZ, USA.

b

Present address: Department of Animal Science, Cornell University, Ithaca, NY, USA.

c

Present address: Department of Animal Biology, University of California, Davis, CA, USA.

References

Abuelo, A, De Koster, J, Hernández, J, Opsomer, G, Grufman, L and Castillo, C 2012. Quantifying bovine insulin: conversion of units. Veterinary Clinical Pathology 41, 308310.CrossRefGoogle Scholar
Alves-Nores, V, Castillo, C, Hernandez, J and Abuelo, A 2017. Comparison of surrogate indices for insulin sensitivity with parameters of the intravenous glucose tolerance test in early lactation dairy cattle. Domestic Animal Endocrinology 61, 4853.CrossRefGoogle ScholarPubMed
Bogaert, H, De Koster, J, Van Den Broeck, W, Van Eetvelde, M and Opsomer, G 2018. Effects of overconditioning on pancreatic insulin secretory capacity, fat infiltration, and the number and size of islets in dairy cows at the end of the dry period. Journal of Dairy Science 101, 1141311420.CrossRefGoogle ScholarPubMed
De Koster, J, Hostens, M, Hermans, K, Van den Broeck, W and Opsomer, G 2016. Validation of different measures of insulin sensitivity of glucose metabolism in dairy cows using the hyperinsulinemic euglycemic clamp test as the gold standard. Domestic Animal Endocrinology 57, 117126.CrossRefGoogle ScholarPubMed
De Koster, J, Hostens, M, Van Eetvelde, M, Hermans, K, Moerman, S, Bogaert, H, Depreester, E, Van den Broeck, W and Opsomer, G 2015. Insulin response of the glucose and fatty acid metabolism in dry dairy cows across a range of body condition scores. Journal of Dairy Science 98, 45804592.CrossRefGoogle ScholarPubMed
Holtenius, K, Agenäs, S, Delavaud, C and Chilliard, Y 2003. Effects of feeding intensity during the dry period. 2. Metabolic and hormonal responses. Journal of Dairy Science 86, 883891.CrossRefGoogle ScholarPubMed
Jaakson, H, Karis, P, Ling, K, IIves-Luht, A, Samarütel, J, Henno, M, Jõudu, I, Waldmann, A, Reimann, E, Pärn, P, Bruckmaier, RM, Gross, JJ, Kaart, T, Kass, M and Ots, M 2018. Adipose tissue insulin receptor and glucose transporter 4 expression, and blood glucose and insulin responses during glucose tolerance tests in transition Holstein cows with different body condition. Journal of Dairy Science 101, 115.CrossRefGoogle ScholarPubMed
Jaakson, H, Ling, K, Samarütel, J, Ilves, A, Kaart, T and Kärt, O 2013. Blood glucose and insulin response of the glucose tolerance test in relation to dairy cow body condition and milk yield. Veterinarija Ir Zootechnika 62, 2835.Google Scholar
Mann, S, Leal Yepes, FA, Duplessis, M, Wakshlag, JJ, Overton, TR, Cummings, BP and Nydam, DV 2016. Dry period plane of energy: effects on glucose tolerance in transition dairy cows. Journal of Dairy Science 99, 701717.CrossRefGoogle ScholarPubMed
Mills, SE, Beitz, DC and Young, JW 1986. Evidence for impaired metabolism in liver during induced lactation ketosis of dairy cows. Journal of Dairy Science 69, 362370.CrossRefGoogle ScholarPubMed
Pires, JA, Souza, AH and Grummer, RR 2007. Induction of hyperlipidemia by intravenous infusion of tallow emulsion causes insulin resistance in Holstein cows. Journal of Dairy Science 90, 27352744.CrossRefGoogle ScholarPubMed
Rico, JE, Saed Samii, S, Mathews, AT, Lovett, J, Haughey, NJ and McFadden, JW 2017. Temporal changes in sphingolipids and systemic insulin sensitivity during the transition from gestation to lactation. PLoS ONE 12, e0176787.CrossRefGoogle ScholarPubMed
Weber, C, Schäff, CT, Kautzsch, U, Börner, S, Erdmann, S, Görs, S, Röntgen, M, Sauerwein, H, Bruckmaier, RM, Metges, CC, Kuhla, B and Hammon, HM 2016. Insulin-dependent glucose metabolism in dairy cows with variable fat mobilization around calving. Journal of Dairy Science 99, 66656679.CrossRefGoogle ScholarPubMed
Zachut, M, Honig, H, Striem, S, Zick, Y, Boura-Halfon, S and Moallem, U 2013. Periparturient dairy cows do not exhibit hepatic insulin resistance, yet adipose-specific insulin resistance occurs in cows prone to high weight loss. Journal of Dairy Science 96, 56565669.CrossRefGoogle Scholar
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