Involvement of plasma adipokines in metabolic and reproductive parameters in Holstein dairy cows fed with diets with differing energy levels.
暂无分享,去创建一个
J. Dupont | C. Ramé | A. Caraty | D. Lomet | D. Guillaume | L. Ma | P. Humblot | N. Mellouk | Linlin Ma | T. Ntallaris | J. Touze | E. Briant | Didier Lomet | Alain Caraty | Namya Mellouk | Joëlle Dupont | Eric Briant | P. Humblot | Daniel Guillaume
[1] M. Hostens,et al. Relationship between serum adiponectin concentration, body condition score, and peripheral tissue insulin response of dairy cows during the dry period. , 2017, Domestic animal endocrinology.
[2] M. Malagón,et al. Adipokines (Leptin, Adiponectin, Resistin) Differentially Regulate All Hormonal Cell Types in Primary Anterior Pituitary Cell Cultures from Two Primate Species , 2017, Scientific Reports.
[3] J. Dupont,et al. Effect of energy balance profiles on metabolic and reproductive response in Holstein and Swedish Red cows. , 2017, Theriogenology.
[4] Jinshun Pan,et al. Adiponectin Deficiency Leads to Female Subfertility and Ovarian Dysfunctions in Mice. , 2016, Endocrinology.
[5] H. Sauerwein,et al. Longitudinal changes in adipose tissue of dairy cows from late pregnancy to lactation. Part 1: The adipokines apelin and resistin and their relationship to receptors linked with lipolysis. , 2016, Journal of dairy science.
[6] Amin Tamadon,et al. The relationship between serum adiponectin and postpartum luteal activity in high-producing dairy cows. , 2015, Theriogenology.
[7] Randhir Singh,et al. Body condition score and its correlation with ultrasonographic back fat thickness in transition crossbred cows , 2015, Veterinary world.
[8] H. Sauerwein,et al. Effect of increasing body condition on key regulators of fat metabolism in subcutaneous adipose tissue depot and circulation of nonlactating dairy cows. , 2015, Journal of dairy science.
[9] M. Kieżun,et al. Adiponectin expression in the porcine pituitary during the estrous cycle and its effect on LH and FSH secretion. , 2014, American journal of physiology. Endocrinology and metabolism.
[10] J. Dupont,et al. Resistin in Dairy Cows: Plasma Concentrations during Early Lactation, Expression and Potential Role in Adipose Tissue , 2014, PloS one.
[11] J. Gross,et al. Short communication: circulating and milk adiponectin change differently during energy deficiency at different stages of lactation in dairy cows. , 2014, Journal of dairy science.
[12] J. Dupont,et al. Adipokines and the Female Reproductive Tract , 2014, International journal of endocrinology.
[13] J. Dupont,et al. Expression of adipokine and lipid metabolism genes in adipose tissue of dairy cows differing in a female fertility quantitative trait locus. , 2013, Journal of dairy science.
[14] S. Déjean,et al. Pre- and post-partum mild underfeeding influences gene expression in the reproductive tract of cyclic dairy cows. , 2013, Reproduction in domestic animals = Zuchthygiene.
[15] J. Dupont,et al. Significant differences in fertility between dairy cows selected for one QTL located on bovine chromosome 3 are not attributable to energy balance, although eating behaviour is affected. , 2013, Animal : an international journal of animal bioscience.
[16] Y. Obara,et al. Changes in circulating adiponectin and metabolic hormone concentrations during periparturient and lactation periods in Holstein dairy cows. , 2012, Animal science journal = Nihon chikusan Gakkaiho.
[17] W. B. Currie,et al. Adiponectin deficit during the precarious glucose economy of early lactation in dairy cows. , 2012, Endocrinology.
[18] T. Kawai,et al. Adiponectin and its receptors modulate granulosa cell and cumulus cell functions, fertility, and early embryo development in the mouse and human. , 2012, Fertility and sterility.
[19] Frédérique Clément,et al. DynPeak: An Algorithm for Pulse Detection and Frequency Analysis in Hormonal Time Series , 2011, PloS one.
[20] R. Bruckmaier,et al. Plasma leptin and mRNA expression of lipogenesis and lipolysis-related factors in bovine adipose tissue around parturition. , 2011, Journal of animal physiology and animal nutrition.
[21] D. Chesneau,et al. Effects of nutritional cues on the duration of the winter anovulatory phase and on associated hormone levels in adult female Welsh pony horses (Equus caballus) , 2011, Reproductive biology and endocrinology : RB&E.
[22] L. Delaby,et al. Dairy cows' reproductive response to feeding level differs according to the reproductive stage and the breed. , 2011, Animal : an international journal of animal bioscience.
[23] J. Gross,et al. Performance and metabolic profile of dairy cows during a lactational and deliberately induced negative energy balance with subsequent realimentation. , 2011, Journal of dairy science.
[24] P. Froment,et al. Expression and effect of resistin on bovine and rat granulosa cell steroidogenesis and proliferation. , 2011, Reproduction.
[25] L. Spicer,et al. Effect of resistin on granulosa and theca cell function in cattle. , 2011, Animal reproduction science.
[26] J. Patton,et al. Influence of energy balance on the somatotrophic axis and matrix metalloproteinase expression in the endometrium of the postpartum dairy cow , 2011, Reproduction.
[27] H. Petit,et al. Nutritional sub-fertility in the dairy cow: towards improved reproductive management through a better biological understanding. , 2010, Animal : an international journal of animal bioscience.
[28] J. Dupont,et al. Effect of adiponectin on bovine granulosa cell steroidogenesis, oocyte maturation and embryo development , 2010, Reproductive biology and endocrinology : RB&E.
[29] M. Świtoński,et al. Gene expression and protein distribution of leptin and its receptor in bovine oocytes and preattachment embryos produced in vitro. , 2009, Animal : an international journal of animal bioscience.
[30] A. Van Soom,et al. Reduced fertility in high-yielding dairy cows: are the oocyte and embryo in danger? Part I. The importance of negative energy balance and altered corpus luteum function to the reduction of oocyte and embryo quality in high-yielding dairy cows. , 2008, Reproduction in domestic animals = Zuchthygiene.
[31] R. Webb,et al. Nutrition, metabolism, and fertility in dairy cows: 1. Dietary energy source and ovarian function. , 2008, Journal of dairy science.
[32] A. Van Soom,et al. The consequences of metabolic changes in high-yielding dairy cows on oocyte and embryo quality. , 2008, Animal : an international journal of animal bioscience.
[33] V. Bordignon,et al. Adiponectin enhances in vitro development of swine embryos. , 2008, Domestic animal endocrinology.
[34] D. Kenny,et al. Endometrial expression of the insulin-like growth factor system during uterine involution in the postpartum dairy cow , 2008, Domestic animal endocrinology.
[35] L. Spicer,et al. Role of adiponectin in regulating ovarian theca and granulosa cell function , 2008, Molecular and Cellular Endocrinology.
[36] J. Olefsky,et al. Adiponectin activates adenosine monophosphate-activated protein kinase and decreases luteinizing hormone secretion in LbetaT2 gonadotropes. , 2008, Molecular endocrinology.
[37] J. Murphy,et al. Negative energy balance in dairy cows is associated with specific changes in IGF-binding protein expression in the oviduct , 2008, Reproduction.
[38] H. Dobson,et al. The high-producing dairy cow and its reproductive performance. , 2007, Reproduction in domestic animals = Zuchthygiene.
[39] J. Murphy,et al. Influence of negative energy balance on cyclicity and fertility in the high producing dairy cow. , 2007, Theriogenology.
[40] M. Coffey,et al. Multiple correlation analyses of metabolic and endocrine profiles with fertility in primiparous and multiparous cows. , 2007, Journal of dairy science.
[41] A. de Kruif,et al. The in vitro development of bovine oocytes after maturation in glucose and beta-hydroxybutyrate concentrations associated with negative energy balance in dairy cows. , 2006, Reproduction in domestic animals = Zuchthygiene.
[42] G. L. Williams,et al. Regulatory roles of leptin in reproduction and metabolism: a comparative review. , 2005, Domestic Animal Endocrinology.
[43] M. Wiltbank,et al. Comparison of ovarian function and circulating steroids in estrous cycles of Holstein heifers and lactating cows. , 2004, Journal of dairy science.
[44] Gerry C. Emmans,et al. Prediction of body lipid change in pregnancy and lactation. , 2004, Journal of dairy science.
[45] M. Diskin,et al. Effects of nutrition and metabolic status on circulating hormones and ovarian follicle development in cattle. , 2003, Animal reproduction science.
[46] R. Veerkamp,et al. Leptin concentrations in relation to energy balance, milk yield, intake, live weight, and estrus in dairy cows. , 2003, Journal of dairy science.
[47] A. Ferlay,et al. Plasma leptin concentration in adult cattle: effects of breed, adiposity, feeding level, and meal intake. , 2002, Journal of animal science.
[48] W. R. Butler,et al. Relationship of fertility to ovarian follicular waves before breeding in dairy cows. , 2002, Journal of animal science.
[49] M. Lucy,et al. Reproductive loss in high-producing dairy cattle: where will it end? , 2001, Journal of dairy science.
[50] W. R. Butler,et al. Nutritional interactions with reproductive performance in dairy cattle. , 2000, Animal reproduction science.
[51] G. Mann,et al. Strategies for reversing the trend towards subfertility in dairy cattle. , 2000, Veterinary journal.
[52] P. Vercoe,et al. Level of nutrition affects leptin concentrations in plasma and cerebrospinal fluid in sheep. , 2000, The Journal of endocrinology.
[53] C. Chamberlain,et al. Ovarian action of leptin , 2000, Endocrine.
[54] M. Boland,et al. Development of dominant follicles and length of ovarian cycles in post-partum dairy cows. , 1990, Journal of reproduction and fertility.
[55] W R Butler,et al. Interrelationships between energy balance and postpartum reproductive function in dairy cattle. , 1989, Journal of dairy science.
[56] J. E. Fortune,et al. Ovarian follicular dynamics during the estrous cycle in heifers monitored by real-time ultrasonography. , 1988, Biology of reproduction.
[57] D E Bauman,et al. Partitioning of nutrients during pregnancy and lactation: a review of mechanisms involving homeostasis and homeorhesis. , 1980, Journal of dairy science.
[58] J. Pelletier,et al. [Radio-immunologic determination of plasma lutenizing hormone in sheep. Comparison with the biologic determination of LH by the diminution of ovarian ascorbic acid, and example of the application to measure of the blood LH in ewes]. , 1968, Comptes rendus hebdomadaires des seances de l'Academie des sciences. Serie D: Sciences naturelles.
[59] R Staufenbiel,et al. Invited review: Methods to determine body fat reserves in the dairy cow with special regard to ultrasonographic measurement of backfat thickness. , 2006, Journal of dairy science.
[60] J. Noordhuizen,et al. Metabolic changes in early lactation and impaired reproductive performance in dairy cows. , 2003, Veterinary research.
[61] D. Blache,et al. Relationships between changes in plasma concentrations of leptin before and after parturition and the timing of first post-partum ovulation in high-producing Holstein dairy cows. , 2000, Reproduction, fertility, and development.
[62] W. R. Butler,et al. Energy balance and ovarian follicle development prior to the first ovulation postpartum in dairy cows receiving three levels of dietary fat. , 1997, Biology of reproduction.
[63] M. Lucy,et al. Follicular dynamics, plasma metabolites, hormones and insulin-like growth factor I (IGF-I) in lactating cows with positive or negative energy balance during the preovulatory period. , 1992, Reproduction, nutrition, development.
[64] R. Jarrige. Ruminant nutrition : recommended allowances and feed tables , 1989 .
[65] B. Rémond. Evolution du poids du contenu du réticulo-rumen chez les vaches laitières au cours des deux premiers mois de la lactation , 1988 .
[66] G. Montgomery,et al. Changes in pulsatile LH secretion after ovariectomy in Ile-de-France ewes in two seasons. , 1985, Journal of reproduction and fertility.