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Assessment of age-related glucose oxidation rates of broiler chickens by using stable isotopes

机译:使用稳定同位素评估肉鸡年龄相关的葡萄糖氧化速率

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During their relatively short commercial lifespan of six weeks, broiler chickens undergo very pronounced age- or body weight-related changes in metabolic rate and body composition. The present study was aimed to assess the age-related changes in glucose oxidation rate of broiler chickens by using C-13-labeled glucose. The methodology for this breath test needed to be established first. Broiler chickens aged from two to six weeks were placed in open-circuit respiration cells and received a single intubation of U-C-13(6)-glucose, followed by breath sampling for 4 hours and mass spectrometric analysis of C-13: C-12 ratio in the exhaled air. Simultaneously, CO2 concentration in the respiration cell air was continuously monitored in order to calculate the cumulative percentage dose recovery (CPDR). With respect to, the methodology, an oral dose of 2 mg U-C-13(6)-glucose per kg body weight while maintaining a CO2 in the concentration of 0.4 to 0.5% was considered to be optimal. The three-parameter Gompertz curve fitted the CPDR values very well. Pronounced age-related changes in exogenous glucose oxidation rates in rapidly growing meat-type chickens were assessed. Young broiler chickens spend only a relatively low percentage of ingested glucose for immediate oxidation. In contrast, broiler chickens approaching the age of maximal absolute growth rate oxidize a greater proportion of the recently ingested glucose relative to the non-oxidative disposal pathways. This shift in the exogenous partitioning is discussed in relation to age-dependent changes in glucose turnover, lipid oxidation and deposition and metabolic heat production. (C) 2004 Elsevier Inc. All rights reserved.
机译:在相对较短的六周商业寿命中,肉鸡的新陈代谢率和身体组成发生了与年龄或体重相关的非常明显的变化。本研究旨在通过使用C-13标记的葡萄糖来评估肉鸡的葡萄糖氧化速率与年龄相关的变化。首先需要建立这种呼气测试的方法。将两到六周龄的肉鸡放在开路呼吸池中,并单次插管UC-13(6)-葡萄糖,然后进行呼气采样4小时,并对C-13:C-12进行质谱分析呼出空气中的比例。同时,对呼吸室空气中的CO2浓度进行连续监测,以计算累积剂量回收率(CPDR)。关于该方法,认为每公斤体重2 mg U-C-13(6)-葡萄糖的口服剂量同时保持CO2浓度为0.4%至0.5%是最佳的。三参数Gompertz曲线很好地拟合了CPDR值。评估了快速生长的肉类鸡中外源葡萄糖氧化速率与年龄有关的明显变化。雏鸡只消耗相对较低百分比的葡萄糖以立即氧化。相反,相对于非氧化处置途径,接近最大绝对生长速度的年龄的肉鸡氧化最近摄取的葡萄糖的更大比例。关于葡萄糖代谢,脂质氧化和沉积以及代谢热产生的年龄依赖性变化,讨论了外源分配的这种变化。 (C)2004 Elsevier Inc.保留所有权利。

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