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首页> 外文期刊>Journal of Animal Science >Effects of dietary strong acid anion challenge on regulation of acid-base balance in sheep
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Effects of dietary strong acid anion challenge on regulation of acid-base balance in sheep

机译:饮食中强酸阴离子挑战对绵羊酸碱平衡调节的影响

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The acid-base status of the extracellular fluid is directly affected by the concentrations of strong basic cations and strong acid anions that are absorbed into the bloodstream from the diet. The objective of this study was to develop and characterize a model for dietary acid challenge in sheep by decreasing the dietary cation-anion difference (DCAD) using NutriChlor (HCl-treated canola meal), an anionic feed supplement. Ten fully fleeced sheep (Rideau-Arcott, 54.3 +/- 6.7 kg of BW) were fed either a control supplement [200 g/d of canola meal, DCAD = 184 mEq/kg of DM, calculated as (Na+ + K+) - (Cl- + S2-)] or an anionic supplement (AS; 200 g/d of NutriChlor, DCAD = -206 mEq/kg of DM) offered twice daily at 0700 and 1100 in a randomized complete block design. The sheep were individually housed and limit-fed a basal diet of dehydrated alfalfa pellets (22% CP and 1.2 Mcal of NE(g)/kg, DM basis) at 1.1 kg of DM/d offered twice daily at 1000 and 1300. Two days before the beginning of the experiment, the sheep were fitted with vinyl catheters (0.86-mm i.d., 1.32-mm o.d.) in the left jugular vein to facilitate blood sampling. Blood and urine samples were obtained daily from 1100 to 1130 on d 1 through 9 and at 0700, 1000, 1300, 1600, and 1900 on d 10. Blood was analyzed for hematocrit, plasma pH, gases, strong ions, and total protein. Urine samples were analyzed for pH. The AS induced a nonrespiratory acid-base disturbance associated with lower (P < 0.05) plasma pH (7.47 vs. 7.39), lower (P < 0.05) urine pH (8.13 vs. 6.09), and lower (P < 0.05) strong ion difference (42.5 vs. 39.5). The AS reduced (P < 0.05) the concentration of plasma glucose, base excess, and bicarbonate and increased (P < 0.05) the concentration of K+ and Cl-. Lowering DCAD increased (P < 0.05) Ca2+ concentrations in plasma by 13%. In conclusion, this dietary model successfully induced a significant acid-base disturbance in sheep. Although the acidifying effects of negative DCAD in the diet may have short-term prophylactic effects of elevating the concentration of Ca2+ in plasma, negative DCAD may have detrimental effects on acid-base balance.
机译:饮食中吸收到血液中的强碱性阳离子和强酸阴离子的浓度直接影响细胞外液的酸碱状态。这项研究的目的是通过使用阴离子饲料补充剂NutriChlor(盐酸处理的低芥酸菜籽粕)降低饮食中的阳离子-阴离子差异(DCAD)来开发和表征绵羊饮食中酸挑战的模型。向十只全绒山羊(Rideau-Arcott,体重为54.3 +/- 6.7千克)喂食任何一种对照补品[200克/天的低芥酸菜粕,DCAD = 184 mEq /千克的DM,计算为(Na + + K +)- (Cl- + S2-)]或阴离子补充剂(AS; 200 g / d的NutriChlor,DCAD = -206 mEq / kg DM),每天两次以0700和1100的价格提供,采用随机完整块设计。将绵羊单独饲养,并以1.1千克DM / d的限量日粮饲喂脱水紫花苜蓿颗粒的基础日粮(22%CP和1.2 Mcal NE(g)/ kg,以DM为基础),每天两次,分别在1000和1300进行两次。在实验开始的前几天,绵羊在左颈静脉装有乙烯基导管(内径0.86毫米,外径1.32毫米),以方便采血。第1天至第9天每天从1100到1130,第10天分别在0700、1000、1300、1600和1900采集血液和尿液样本。分析血液中的血细胞比容,血浆pH,气体,强离子和总蛋白质。分析尿液样品的pH。 AS引起非呼吸性酸碱紊乱,与血浆pH较低(P <0.05)(7.47对7.39),尿液pH较低(P <0.05)(8.13对6.09)和强离子较低(P <0.05)相关差异(42.5与39.5)。 AS降低(P <0.05)血浆葡萄糖,碱过量和碳酸氢盐的浓度,并增加(P <0.05)K +和Cl-的浓度。降低DCAD可使血浆中Ca2 +浓度增加(P <0.05)13%。总之,这种饮食模型成功地诱发了绵羊明显的酸碱紊乱。尽管日粮中DCAD阴性的酸化作用可能会提高血浆中Ca2 +的浓度,从而产生短期预防作用,但DCAD阴性可能会对酸碱平衡产生不利影响。

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