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铜缺乏以及铜缺乏与高膳食铁或钼相结合对犊牛吞噬细胞功能和对呼吸道疾病挑战反应的影响。

Effects of copper deficiency and copper deficiency coupled with high dietary iron or molybdenum on phagocytic cell function and response of calves to a respiratory disease challenge.

作者信息

Gengelbach G P, Ward J D, Spears J W, Brown T T

机构信息

Department of Animal Science, North Carolina State University, Raleigh 27695, USA.

出版信息

J Anim Sci. 1997 Apr;75(4):1112-8. doi: 10.2527/1997.7541112x.

DOI:10.2527/1997.7541112x
PMID:9110227
Abstract

A study was conducted to determine the effects of supplementing a diet marginally deficient in copper (Cu) with iron (Fe), molybdenum (Mo), or Cu on phagocytic cell function and disease resistance of calves. Thirty-one calves were born to heifers fed a corn silage-based diet containing 4.5 mg of Cu/kg. Treatments consisted of 1) control (CON; no supplemental Cu, Fe, or Mo), 2) 600 mg of Fe added/kg (FE), 3) 5 mg of Mo added/kg (MO), or 4) 10 mg of Cu added/kg of DM (CU). Activity of superoxide dismutase was lower (P < .06) in neutrophils from MO vs CON or CU calves at 170 d of age. bactericidal activity of neutrophils from MO calves tended (P = .15) to be lower compared with those from CU calves at 70 d of age. Calves were inoculated intranasally with live infectious bovine rhinotracheitis virus (IBRV) 2 d after weaning, followed by intratracheal administration of Pasteurella hemolytica 5 d later. Iron- and Cu-supplemented calves exhibited higher (P < .01) body temperatures and lower (P < .06) feed intakes following IBRV inoculation compared with CON and MO calves. Copper-supplemented calves had higher levels of plasma tumor necrosis factor (TNF) than MO calves at weaning (P < .05) and tended to have higher plasma TNF (P = .11) than FE and MO calves 5 d after IBRV inoculation. These data indicate that dietary levels of Mo and Cu can affect body temperature and feed intake responses to disease by affecting TNF and perhaps other cytokines.

摘要

开展了一项研究,以确定用铁(Fe)、钼(Mo)或铜(Cu)补充铜(Cu)含量略低的日粮对犊牛吞噬细胞功能和抗病能力的影响。31头犊牛由饲喂含4.5毫克Cu/千克玉米青贮日粮的小母牛所生。处理方式包括:1)对照(CON;不补充Cu、Fe或Mo),2)每千克添加600毫克Fe(FE),3)每千克添加5毫克Mo(MO),或4)每千克干物质添加10毫克Cu(CU)。170日龄时,MO组犊牛中性粒细胞中的超氧化物歧化酶活性低于CON组或CU组犊牛(P <.06)。70日龄时,MO组犊牛中性粒细胞的杀菌活性与CU组犊牛相比有降低趋势(P =.15)。犊牛断奶后2天经鼻接种传染性牛鼻气管炎病毒(IBRV)活病毒,5天后经气管内接种溶血巴斯德氏菌。与CON组和MO组犊牛相比,补充铁和铜的犊牛在接种IBRV后体温更高(P <.01),采食量更低(P <.06)。断奶时,补充铜的犊牛血浆肿瘤坏死因子(TNF)水平高于MO组犊牛(P <.05),接种IBRV 5天后,其血浆TNF水平高于FE组和MO组犊牛,且有升高趋势(P =.11)。这些数据表明,日粮中Mo和Cu的水平可通过影响TNF以及可能的其他细胞因子来影响机体对疾病的体温和采食量反应。

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