Briet F, Jeejeebhoy K N
Department of Medicine, University of Toronto, Ontario, Canada.
Am J Clin Nutr. 2001 May;73(5):975-83. doi: 10.1093/ajcn/73.5.975.
Previous studies suggested that cell energetics are altered by malnutrition.
We hypothesized that nutritional manipulations influence mitochondrial enzyme activities of the electron transport chain in both skeletal muscle and blood mononuclear cells.
After a gastrostomy tube was inserted, 44 rats were randomly assigned to 1 of 4 experimental groups: control fed (CF; 364 kJ/d for 7 d), hypoenergetic fed (HF; 92 kJ/d for 7 d), hypoenergetic protein refed (HPR; 92 kJ/d for 7 d and then 129 kJ/d for 1 d), and hypoenergetic glucose refed (HGR; 92 kJ/d for 7 d and then 129 kJ/d for 1 d). The protein and glucose contents of the liquid formulas were different for the HPR and HGR groups. After mitochondria were isolated from the soleus muscle, the activities of complexes I--IV were measured spectrophotometrically. Because of the lack of available tissue, only the activity of complex I was measured in the mononuclear cell extract.
The recovery of complex activities in the CF and HF groups was not significantly different in the mitochondrial fraction of the soleus muscle. Compared with that in the CF group, the activities of complexes I--III in the mitochondrial fraction of the soleus muscle and the activity of complex I in mononuclear cells were significantly lower in the HF group. The activities of complexes I--III in the mitochondrial fraction of the soleus muscle and the activity of complex I in mononuclear cells were significantly higher in the HPR than in the HF group. The activity of complex IV was generally not affected by nutritional manipulations.
Malnutrition decreases activities of mitochondrial complexes, which are restored by protein but not glucose refeeding.
以往研究表明,营养不良会改变细胞能量代谢。
我们假设营养干预会影响骨骼肌和血液单核细胞中电子传递链的线粒体酶活性。
插入胃造瘘管后,将44只大鼠随机分为4个实验组之一:对照喂养组(CF;7天内每日364千焦)、低能量喂养组(HF;7天内每日92千焦)、低能量蛋白质再喂养组(HPR;7天内每日92千焦,之后1天每日129千焦)和低能量葡萄糖再喂养组(HGR;7天内每日92千焦,之后1天每日129千焦)。HPR组和HGR组的液体配方中的蛋白质和葡萄糖含量不同。从比目鱼肌分离出线粒体后,用分光光度法测量复合物I - IV的活性。由于缺乏可用组织,仅在单核细胞提取物中测量了复合物I的活性。
在比目鱼肌的线粒体部分,CF组和HF组复合物活性的恢复没有显著差异。与CF组相比,HF组比目鱼肌线粒体部分中复合物I - III的活性以及单核细胞中复合物I的活性显著降低。HPR组比目鱼肌线粒体部分中复合物I - III的活性以及单核细胞中复合物I的活性显著高于HF组。复合物IV的活性一般不受营养干预的影响。
营养不良会降低线粒体复合物的活性,蛋白质再喂养可使其恢复,而葡萄糖再喂养则不能。