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Phospholipid fatty acid pattern and D-glucose metabolism in muscles from ω3 fatty acid-depleted rats

机译:ω3脂肪酸耗竭大鼠肌肉中的磷脂脂肪酸模式和D-葡萄糖代谢

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A depletion in long-chain polyunsaturated ω3 fatty acids may affect fuel homeostasis. In such a perspective, the present study deals mainly with the in vitro fate of D-[U-~(14)C]glucose in hemidiaphragms, stretched soleus and plantaris muscle pieces obtained from normal and ω3-de-pleted rats (second generation) and incubated in the absence or presence of insulin. When so required, the ω3-depleted rats were injected 120 min before sacrifice with either a ω3 fatty acid-rich medium-chain triglyceride:fish oil emulsion (FO) or a control medium-chain triglycer-ide:olive oil emulsion (OO). The content of the soleus muscle in long-chain polyunsaturated ω3 fatty acids was severely decreased in the ω3-depleted rats, and modestly albeit significantly increased after injection of FO to these animals. In stretched soleus muscles from OO-injected ω3-depleted rats, the absolute values for glycogen synthesis measured in the absence or presence of insulin were about twice higher than in normal animals. In the OO-injected ω3-depleted rats, insulin augmented the output of ~(14)C-labelled amino acids, whilst such was not the case in normal animals. These and other findings suggest a lower catabolism of D-glucose relative to the anabolic process of glycogen synthesis and a lower availability of endogenous amino acids in the muscles of ω3-depleted rats, as compared to those of control animals. The prior injection of FO to the ω3-depleted rats restored a normal value for the paired ratio between the output of ~(14)C-labelled amino acids and acidic metabolites, but further increased glycogen net synthesis. It is proposed, therefore, that the perturbation of D-glucose metabolism in muscles from ω3-depleted rats involves a multifactorial determinism, only some of the concerned factors being susceptible to rapid correction after enrichment of cell phospholipids in long-chain polyunsaturated ω3 fatty acids.
机译:长链多不饱和ω3脂肪酸的消耗可能会影响燃料的稳态。从这种角度来看,本研究主要涉及从正常和ω3贫血大鼠(第二代)中获得的ph肌,比目鱼肌和plant肌碎片的D- [U-〜(14)C]葡萄糖的体外命运。 ),并在不存在或存在胰岛素的情况下进行孵育。必要时,在处死120分钟前向ω3耗尽的大鼠注射富含ω3脂肪酸的中链甘油三酯:鱼油乳剂(FO)或对照中链甘油三酯:橄榄油油乳剂(OO) 。在富含ω3的大鼠中,长链多不饱和ω3脂肪酸中的比目鱼肌含量显着降低,并且在向这些动物注射FO后,比目鱼肌含量有明显增加。在来自OO注射的ω3耗竭的大鼠的比目鱼肌中,在不存在或存在胰岛素的情况下测得的糖原合成绝对值比正常动物高约两倍。在OO注射的ω3耗尽的大鼠中,胰岛素增加了〜(14)C标记的氨基酸的输出,而在正常动物中情况并非如此。这些和其他发现表明,与对照动物相比,相对于糖原合成的合成代谢过程而言,D-葡萄糖的分解代谢更低,并且在ω3耗尽的大鼠的肌肉中,内源氨基酸的利用率更低。先前向ω3耗竭的大鼠注射FO恢复了〜(14)C标记的氨基酸输出与酸性代谢产物之间的配对比,恢复了正常值,但进一步增加了糖原净合成。因此,有人提出,ω3耗竭大鼠肌肉中的D葡萄糖代谢紊乱涉及多因素确定性,只有某些相关因素易于在长链多不饱和ω3脂肪酸中富集细胞磷脂后迅速校正。 。

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