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The application of microcalorimetry to the assessment of metabolic efficiency in isolated rat hepatocytes

机译:微量热法在大鼠离体肝细胞代谢效率评估中的应用

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摘要

1. Heat output by suspensions of isolated rat hepatocytes was determined by using a modified batch-type microcalorimeter. 2. The ratio of O2 uptake (determined polarographically) to heat output was used to assess the metabolic efficiency of isolated hepatocytes. 3. Cells from starved or fed rats incubated in either bicarbonate-buffered physiological saline containing gelatin, or bicarbonate-buffered physiological saline containing amino acids, serum albumin and glucose showed no significant difference with respect to the ratio of O2 uptake to heat output. 4. For liver cells from 24h-starved rats, the addition of 10mm-dihydroxyacetone and 2.5mm-fructose significantly decreased the ratio of O2 uptake to heat output from 1.94±0.05 in the controls to 1.52±0.04 and 1.54±0.01μmol/J respectively. 5. Glucagon (1μm), which slightly increased both O2 uptake and heat output, did not significantly alter the ratio. 6. The addition of extracellular 10mm-NH4Cl and urease to provide an energetically wasteful cycle by ensuring hydrolysis of newly synthesized urea, lowered the ratio of O2 uptake to heat output from 1.81±0.08 to 1.47±0.06μmol/J, indicating a reduced metabolic efficiency. 7. Metabolic efficiency in rats of different dietary regimen, age and genetically based obesity was also assessed. No differences in the ratio of O2 uptake to heat output were found between liver cell suspensions prepared from rats maintained on colony diet and high-fat diet or sucrose-rich diet nor between animals ranging from 38 to 179 days of age. Comparison of the ratio of liver cell O2 uptake to heat output between homozygote Zucker fa/fa obese rats and their lean littermates showed no significant difference. 8. It is concluded that the ratio of O2 uptake to heat output for isolated hepatocytes is relatively constant unless perturbed by conditions that markedly enhance substrate cycling.
机译:1.使用改良的分批式微热量计测定分离的大鼠肝细胞悬液的热量输出。 2.使用O 2摄取(通过极谱法确定)与热量输出的比率来评估分离的肝细胞的代谢效率。 3.在饥饿的或进食的大鼠的细胞中,在含有明胶的碳酸氢盐缓冲生理盐水或含有氨基酸,血清白蛋白和葡萄糖的碳酸氢盐缓冲生理盐水中培养,O2吸收与热量输出的比例无显着差异。 4.对于24小时饥饿的大鼠的肝细胞,添加10mm-二羟基丙酮和2.5mm-果糖显着降低了O2吸收与热量输出的比例,从对照组的1.94±0.05降至1.52±0.04和1.54±0.01μmol/ J分别。 5.胰高血糖素(1μm)略微增加了O2的吸收和热量输出,但并未显着改变该比例。 6.添加细胞外10mm-NH4Cl和尿素酶,通过确保新合成尿素的水解来提供能量浪费的循环,将O2吸收与热量输出的比例从1.81±0.08降低到1.47±0.06μmol/ J,表明代谢降低效率。 7.还评估了不同饮食方案,年龄和遗传性肥胖大鼠的代谢效率。在采用集落饮食和高脂饮食或富含蔗糖饮食的大鼠制备的肝细胞悬液之间,或在38至179天龄的动物之间,未发现O2吸收与热量输出的比率存在差异。比较纯合的Zucker fa / fa肥胖大鼠和瘦同窝仔猪的肝细胞O2吸收与热量输出的比率,没有显着差异。 8.结论是,分离的肝细胞的O2吸收与热量输出之比相对恒定,除非受到明显增强底物循环的条件所扰动。

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