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Glucose requirements of an activated immune system in lactating Holstein cows

机译:泌乳荷斯坦奶牛激活的免疫系统对葡萄糖的需求

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摘要

Accurately quantifying activated immune system energy requirements in vivo is difficult, but a better understanding may advance strategies to maximize animal productivity. Study objectives were to estimate whole-body glucose utilization following an i.v. endo-toxin challenge. Lactating Holstein cows were jugular catheterized and assigned 1 of 3 bolus treatments: con-trol (CON; 5 mL of saline; n = 6), lipopolysaccharide (LPS)-administered (LPS-C; 1.5 μg/kg of body weight; Escherichia coli 055:B5; n = 6), and LPS + euglycemic clamp (LPS-Eu; 1.5 μg/kg of body weight; 50% glucose solution infusion; n = 6). After LPS administration, blood glucose was determined every 10 min and glu-cose infusion rates were adjusted in LPS-Eu cows to maintain euglycemia for 720 min. Blood samples were obtained 180, 360, 540, and 720 min postbolus for further analysis. Cows were milked 360 and 720 min postbolus. Blood glucose was increased 84% in LPS-administered cows for up to 150 min postbolus; there-after, circulating glucose was decreased 30% in LPS-C relative to LPS-Eu and CON cows. Mild hyperthermia (+0.5℃) occurred between 30 and 90 min postbolus in LPS-administered relative to CON cows; thereafter, rectal temperature did not differ between treatments. Milk yield and lactose percentage were decreased 80 and 11%, respectively, in LPS-administered relative to CON cows. Circulating insulin was increased 4 fold and nonesterified fatty acids, β-hydroxybutyrate, and ionized Ca were decreased ~50% in LPS-administered compared with CON cows. Plasma L-lactate, hapto-globin, and serum amyloid A increased ~160, 260, and 75%, respectively, in LPS-administered relative to CON cows. Overall, LPS-binding protein was increased 87% in LPS-administered relative to CON cows; however, at 720 min, it was decreased 25% in LPS-Eu compared with LPS-C cows. White blood cell count decreased ~90% in LPS-administered cows at 180 min and pro-gressively increased to ~50% of CON values by 720 min. Total glucose deficit during the 720 min follow-ing LPS administration was calculated as the decrease in the amount of glucose required to synthesize milk (due to the decrease in milk yield relative to prebolus levels) plus the amount of glucose infused to maintain euglycemia (in LPS-Eu cows only) and was 461, 1,259, and 1,553 g for CON, LPS-C, and LPS-Eu cows, re-spectively. Our data indicate an acutely activated im-mune system uses >1 kg of glucose within 720 min and maintaining euglycemia did not rescue milk synthesis.
机译:在体内准确量化活化的免疫系统能量需求是困难的,但是更好的理解可能会促进最大化动物生产力的策略。研究目标是评估静脉注射后的全身葡萄糖利用率。内毒素挑战。将泌乳的荷斯坦奶牛经颈导管插入并分配3次大剂量治疗中的1次:控制(CON; 5 mL生理盐水; n = 6);给予脂多糖(LPS)(LPS-C; 1.5μg/ kg体重;埃希氏菌属)大肠杆菌055:B5; n = 6),以及LPS +正常血糖钳夹(LPS-Eu; 1.5μg/ kg体重; 50%葡萄糖溶液输注; n = 6)。 LPS给药后,每10分钟测定一次血糖,并调整LPS-Eu母牛的葡萄糖输注速率,以维持720分钟的正常血糖。推注后180、360、540和720分钟获得血样,以进行进一步分析。牛在推注后360和720分钟挤奶。推注后150分钟内,使用LPS的母牛的血糖升高了84%。此后,相对于LPS-Eu和CON奶牛,LPS-C的循环葡萄糖降低了30%。相对于CON奶牛,LPS给药后30至90分钟之间会发生轻度的高温(+ 0.5℃);此后,治疗之间的直肠温度没有差异。相对于CON奶牛,LPS施用的牛奶产量和乳糖百分比分别降低了80%和11%。与CON母牛相比,LPS施用的循环胰岛素增加了4倍,非酯化脂肪酸,β-羟基丁酸酯和离子化Ca减少了约50%。与CON奶牛相比,LPS施用的血浆L-乳酸,触珠蛋白和血清淀粉样蛋白A分别增加了约160、260和75%。总体而言,与CON奶牛相比,LPS施用的LPS结合蛋白增加了87%。然而,在720分钟时,与LPS-C奶牛相比,LPS-Eu的体重下降了25%。在180分钟时,使用LPS的奶牛的白细胞计数下降了约90%,到720分钟时逐渐上升到CON值的约50%。在随后的720分钟LPS施用期间,总葡萄糖缺乏症的计算方法是:合成牛奶所需的葡萄糖量减少(由于相对于预摄入水平的牛奶产量减少)加上为维持正常血糖而注入的葡萄糖量(以仅LPS-Eu奶牛),CON,LPS-C和LPS-Eu奶牛分别为461、1,259和1,553 g。我们的数据表明,急性激活的免疫系统在720分钟内使用了> 1 kg葡萄糖,维持正常血糖不能挽救牛奶的合成。

著录项

  • 来源
    《Journal of dairy science》 |2017年第3期|2360-2374|共15页
  • 作者单位

    Department of Animal Sciences, Iowa State University, Ames 50011;

    Department of Animal Sciences, Iowa State University, Ames 50011;

    Department of Animal Sciences, Iowa State University, Ames 50011;

    Department of Animal Sciences, Iowa State University, Ames 50011;

    Department of Animal Sciences, Iowa State University, Ames 50011;

    Department of Animal Sciences, Iowa State University, Ames 50011;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    glucose homeostasis; inflammation; insulin; lipopolysaccharide;

    机译:葡萄糖稳态炎;胰岛素;脂多糖;
  • 入库时间 2022-08-17 23:22:45

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