Effects of maintaining eucalcemia following immunoactivation in lactating Holstein dairy cows.
暂无分享,去创建一个
L. Baumgard | E. A. Horst | M. Al-Qaisi | B. Goetz | M. Abeyta | C. McCarthy | M. A. Abeyta | E. Mayorga | S. K. Kvidera | S. Portner | E. Horst
[1] L. Baumgard,et al. Effects of an oral supplement containing calcium and live yeast on post-absorptive metabolism, inflammation and production following intravenous lipopolysaccharide infusion in dairy cows. , 2020, Research in veterinary science.
[2] L. Baumgard,et al. Effects of dietary zinc source on the metabolic and immunological response to lipopolysaccharide in lactating Holstein dairy cows. , 2019, Journal of dairy science.
[3] J. McArt,et al. Association of transient, persistent, or delayed subclinical hypocalcemia with early lactation disease, removal, and milk yield in Holstein cows. , 2019, Journal of dairy science.
[4] J. Loor,et al. Effects of ORAI calcium release-activated calcium modulator 1 (ORAI1) on neutrophil activity in dairy cows with subclinical hypocalcemia1. , 2019, Journal of animal science.
[5] Guanlin Wang,et al. Intravenous calcium infusion in a calving protocol disrupts calcium homeostasis compared with an oral calcium supplement. , 2019, Journal of dairy science.
[6] W. Heuwieser,et al. Association of postpartum hypocalcemia with early-lactation milk yield, reproductive performance, and culling in dairy cows. , 2018, Journal of dairy science.
[7] M. Meurer,et al. Endotoxaemia differentially regulates the expression of renal Ca2+ transport proteins in mice , 2018, Acta physiologica.
[8] Xiaoling Chen,et al. Calcium-sensing receptor in nutrient sensing: an insight into the modulation of intestinal homoeostasis. , 2018, The British journal of nutrition.
[9] S. LeBlanc,et al. Short communication: The effect of calcium supplementation at calving on neutrophil function. , 2018, Journal of dairy science.
[10] G. Klein. The Role of Calcium in Inflammation-Associated Bone Resorption , 2018, Biomolecules.
[11] M. Sperandio,et al. Calcium signalling and related ion channels in neutrophil recruitment and function , 2018, European journal of clinical investigation.
[12] K. Merriman,et al. Intramammary 25-hydroxyvitamin D3 treatment modulates innate immune responses to endotoxin-induced mastitis. , 2018, Journal of dairy science.
[13] V. Meucci,et al. Plasma procalcitonin concentration in healthy calves and those with septic systemic inflammatory response syndrome. , 2018, Veterinary journal.
[14] L. Baumgard,et al. Effect of chromium on bioenergetics and leukocyte dynamics following immunoactivation in lactating Holstein cows. , 2018, Journal of dairy science.
[15] E. Trevisi,et al. Assessment of the innate immune response in the periparturient cow. , 2017, Research in veterinary science.
[16] J. McArt,et al. Field trial of 2 calcium supplements on early lactation health and production in multiparous Holstein cows. , 2017, Journal of dairy science.
[17] K. Galvão,et al. Use of calcitriol to maintain postpartum blood calcium and improve immune function in dairy cows. , 2017, Journal of dairy science.
[18] D. Nydam,et al. Association between subclinical hypocalcemia in the first 3 days of lactation and reproductive performance of dairy cows. , 2017, Theriogenology.
[19] J. Rehfeld. Cholecystokinin—From Local Gut Hormone to Ubiquitous Messenger , 2017, Front. Endocrinol..
[20] L. Baumgard,et al. Glucose requirements of an activated immune system in lactating Holstein cows. , 2017, Journal of dairy science.
[21] W. Trout,et al. Inflammatory biomarkers are associated with ketosis in periparturient Holstein cows. , 2016, Research in veterinary science.
[22] E. F. Eckel,et al. Invited review: Role of bacterial endotoxins in the etiopathogenesis of periparturient diseases of transition dairy cows. , 2016, Journal of dairy science.
[23] B. Bradford,et al. Invited review: Inflammation during the transition to lactation: New adventures with an old flame. , 2015, Journal of dairy science.
[24] J. Carroll,et al. Live Yeast and Yeast Cell Wall Supplements Enhance Immune Function and Performance in Food-Producing Livestock: A Review †,‡ , 2015, Microorganisms.
[25] J. Goff,et al. Effect of oral mineral and energy supplementation on blood mineral concentrations, energetic and inflammatory profile, and milk yield in dairy cows affected with dystocia. , 2015, Veterinary journal.
[26] Leonie Roland,et al. Hematology as a diagnostic tool in bovine medicine , 2014, Journal of veterinary diagnostic investigation : official publication of the American Association of Veterinary Laboratory Diagnosticians, Inc.
[27] Chong Wang,et al. Effect of recombinant bovine granulocyte colony-stimulating factor covalently bound to polyethylene glycol injection on neutrophil number and function in periparturient dairy cows. , 2014, Journal of dairy science.
[28] J. Gross,et al. Hyperketonemia during lipopolysaccharide-induced mastitis affects systemic and local intramammary metabolism in dairy cows. , 2014, Journal of dairy science.
[29] I. Yoon,et al. Effects of feeding various dosages of Saccharomyces cerevisiae fermentation product in transition dairy cows. , 2014, Journal of dairy science.
[30] E. Takeda,et al. Downregulation of renal type IIa sodium-dependent phosphate cotransporter during lipopolysaccharide-induced acute inflammation. , 2014, American journal of physiology. Renal physiology.
[31] C. Risco,et al. Effect of induced subclinical hypocalcemia on physiological responses and neutrophil function in dairy cows. , 2014, Journal of dairy science.
[32] D. Riccardi,et al. Emerging roles of the extracellular calcium-sensing receptor in nutrient sensing: control of taste modulation and intestinal hormone secretion , 2014, British Journal of Nutrition.
[33] Janet S. Lee,et al. Calcium Supplementation During Sepsis Exacerbates Organ Failure and Mortality via Calcium/Calmodulin-Dependent Protein Kinase Kinase Signaling , 2013, Critical care medicine.
[34] W. Brunow de Carvalho,et al. Ionized hypocalcemia is an early event and is associated with organ dysfunction in children admitted to the intensive care unit. , 2013, Journal of critical care.
[35] G. Oetzel. Oral calcium supplementation in peripartum dairy cows. , 2013, The Veterinary clinics of North America. Food animal practice.
[36] G. Oetzel,et al. Effect of oral calcium bolus supplementation on early-lactation health and milk yield in commercial dairy herds. , 2012, Journal of dairy science.
[37] C. Risco,et al. Evaluation of peripartal calcium status, energetic profile, and neutrophil function in dairy cows at low or high risk of developing uterine disease. , 2012, Journal of dairy science.
[38] J. M. Huzzey,et al. Associations of subclinical hypocalcemia at calving with milk yield, and feeding, drinking, and standing behaviors around parturition in Holstein cows. , 2012, Journal of dairy science.
[39] M. Holowaychuk,et al. Hypocalcemia and hypovitaminosis D in dogs with induced endotoxemia. , 2012, Journal of veterinary internal medicine.
[40] M. Rossol,et al. Extracellular Ca2+ is a danger signal activating the NLRP3 inflammasome through G protein-coupled calcium sensing receptors , 2012, Nature Communications.
[41] J. Santos,et al. The association of serum metabolites with clinical disease during the transition period. , 2011, Journal of dairy science.
[42] J. Goff,et al. Prevalence of subclinical hypocalcemia in dairy herds. , 2011, Veterinary journal.
[43] Q. Zebeli,et al. Nutrition, microbiota, and endotoxin-related diseases in dairy cows , 2010 .
[44] G. Bertin,et al. Meta-analysis of the influence of Saccharomyces cerevisiae supplementation on ruminal parameters and milk production of ruminants. , 2009, Journal of dairy science.
[45] M. Bionaz,et al. Effects of inflammatory conditions on liver activity in puerperium period and consequences for performance in dairy cows. , 2008, Journal of dairy science.
[46] E. Tschirhart,et al. Regulation of superoxide production in neutrophils: role of calcium influx , 2008, Journal of leukocyte biology.
[47] M. Paape,et al. Comparison of Holstein and Jersey innate immune responses to Escherichia coli intramammary infection. , 2008, Journal of dairy science.
[48] I. Lean,et al. Milk fever in dairy cows: a review of pathophysiology and control principles. , 2008, Veterinary journal.
[49] J. Goff. The monitoring, prevention, and treatment of milk fever and subclinical hypocalcemia in dairy cows. , 2008, Veterinary journal.
[50] S. LeBlanc,et al. Metabolic predictors of post-partum disease and culling risk in dairy cattle. , 2007, Veterinary journal.
[51] J. Goff,et al. Parturition and hypocalcemia blunts calcium signals in immune cells of dairy cattle. , 2006, Journal of dairy science.
[52] C. Hanzen,et al. Relationship between haptoglobin, serum amyloid A, and clinical status in a survey of dairy herds during a 6-month period. , 2006, Veterinary clinical pathology.
[53] D. Pellerin,et al. Impact of lowering dietary cation-anion difference in nonlactating dairy cows: a meta-analysis. , 2006, Journal of dairy science.
[54] J. Young,et al. Strong relationships between mediators of the acute phase response and fatty liver in dairy cows , 2005 .
[55] J. Goff,et al. Adapting to the Transition Between Gestation and Lactation: Differences Between Rat, Human and Dairy Cow , 2005, Journal of Mammary Gland Biology and Neoplasia.
[56] T. Rosol,et al. Alterations in serum parathyroid hormone and electrolyte concentrations and urinary excretion of electrolytes in horses with induced endotoxemia. , 2005, Journal of veterinary internal medicine.
[57] V. Pettilä,et al. Prevalence and predictive value of ionized hypocalcemia among critically ill patients , 2003, Acta anaesthesiologica Scandinavica.
[58] T. Nishida,et al. Effect of lipopolysaccharide infusion on serum macromineral and vitamin D concentrations in dairy cows. , 2003, Journal of dairy science.
[59] M. Nishimura,et al. Effects of extracellular Ca2+ on phagocytosis and intracellular Ca2+ concentrations in polymorphonuclear leukocytes of postpartum dairy cows. , 2003, Research in veterinary science.
[60] H. Yokota,et al. Relationship between serum TNF activity and insulin resistance in dairy cows affected with naturally occurring fatty liver. , 2001, The Journal of veterinary medical science.
[61] K. Becker,et al. Disordered calcium homeostasis of sepsis: association with calcitonin precursors , 2000, European journal of clinical investigation.
[62] E. Martin,et al. Leukocyte-independent plasma extravasation during endotoxemia , 2000, Critical care medicine.
[63] L. Lind,et al. Hypocalcemia during porcine endotoxemic shock: Effects of calcium administration , 2000, Critical care medicine.
[64] J. Goff. Treatment of calcium, phosphorus, and magnesium balance disorders. , 1999, The Veterinary clinics of North America. Food animal practice.
[65] E. Brown,et al. Inhibition of PTH secretion by interleukin-1 beta in bovine parathyroid glands in vitro is associated with an up-regulation of the calcium-sensing receptor mRNA. , 1997, Biochemical and biophysical research communications.
[66] P. H. Robinson. Effect of yeast culture (Saccharomyces cerevisiae) on adaptation of cows to diets postpartum. , 1997, Journal of dairy science.
[67] Oetzel Gr. Effect of calcium chloride gel treatment in dairy cows on incidence of periparturient diseases , 1996 .
[68] J. Proksch,et al. Effects of lipid A on calcium homeostasis in renal proximal tubules. , 1996, The Journal of pharmacology and experimental therapeutics.
[69] L. D. Muller,et al. Effect of yeast cultures on performance of lactating dairy cows: a field study. , 1994, Journal of dairy science.
[70] M. Cohen. Molecular events in the activation of human neutrophils for microbial killing. , 1994, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[71] J. Spitzer,et al. Sepsis- and endotoxin-induced increase in organ glucose uptake in leukocyte-depleted rats. , 1992, The American journal of physiology.
[72] W. C. Wagner,et al. Function of neutrophils and chemoattractant properties of fetal placental tissue during the last month of pregnancy in cows. , 1992, American journal of veterinary research.
[73] H. Kindahl,et al. A possible role of endotoxins in spontaneous paretic cows around parturition. , 1992, Zentralblatt fur Veterinarmedizin. Reihe A.
[74] J. Holaday,et al. Calcium administration increases the mortality of endotoxic shock in rats. , 1989, Critical care medicine.
[75] B. Chernow,et al. Hypocalcemia in critically ill children. , 1989, The Journal of pediatrics.
[76] J. Goff,et al. Periparturient hypocalcemia in cows: effects on peripheral blood neutrophil and lymphocyte function. , 1989, Journal of dairy science.
[77] J. Naylor,et al. Relationships between metabolic changes and clinical signs in pregnant sheep given endotoxin. , 1986, Canadian journal of veterinary research = Revue canadienne de recherche veterinaire.
[78] P. Rorsman,et al. Calcium and delayed potassium currents in mouse pancreatic beta‐cells under voltage‐clamp conditions. , 1986, The Journal of physiology.
[79] R. Daniel. Motility of the rumen and abomasum during hypocalcaemia. , 1983, Canadian journal of comparative medicine : Revue canadienne de medecine comparee.
[80] R. Pennington. The metabolism of short-chain fatty acids in the sheep. I. Fatty acid utilization and ketone body production by rumen epithelium and other tissues. , 1952, The Biochemical journal.
[81] J. W. Hibbs,et al. Milk Fever (Parturient Paresis) in Dairy Cows—A Review , 1950 .
[82] G. Hendy,et al. Calcium-sensing receptor, proinflammatory cytokines and calcium homeostasis. , 2016, Seminars in cell & developmental biology.
[83] R. Garofalo,et al. The calcium-sensing receptor as a mediator of inflammation. , 2016, Seminars in cell & developmental biology.
[84] B. Bradford,et al. Yeast product supplementation modulated feeding behavior and metabolism in transition dairy cows. , 2015, Journal of dairy science.
[85] Rodney W. Johnson. Fueling the immune response: what’s the cost? , 2012 .
[86] Richard S Lewis,et al. Calcium signaling mechanisms in T lymphocytes. , 2001, Annual review of immunology.
[87] M. Richards,et al. Physiological responses to repeated endotoxin challenge are selectively affected by recombinant bovine somatotropin administration to calves. , 1996, Domestic animal endocrinology.
[88] G. Oetzel. Effect of calcium chloride gel treatment in dairy cows on incidence of periparturient diseases. , 1996, Journal of the American Veterinary Medical Association.
[89] A. Zarkower,et al. Clinical and clinico-pathological effects of Escherichia coli endotoxin in mature cattle. , 1975, Canadian journal of comparative medicine : Revue canadienne de medecine comparee.
[90] A. Thomas. Parturient Apoplexy in Cows-A form of Septicæmia , 1889 .