Gaster Michael
KMEB, Dept. of Endocrinology, Odense University Hospital, DK-5000 Odense, Denmark.
Biochim Biophys Acta. 2009 Jan;1791(1):17-24. doi: 10.1016/j.bbalip.2008.09.003. Epub 2008 Oct 8.
Both endogenous and exogenous lipid levels may be regulators of total lipid oxidation in skeletal muscles. We studied the dynamics of lipid oxidation in human myotubes established from healthy, lean subjects exposed to acutely and chronically increased palmitate concentrations. The intramyocellular triacylglycerol content increased with chronic palmitate exposure. Both, ectopically increased intracellular and extracellular lipid levels were simultaneously oxidized and could partly suppress each other's oxidation. Overall, the highest acute palmitate treatments stimulated fatty acid oxidation whilst the highest chronic treatments decreased total lipid oxidation. Intracellular lipids showed a more complete oxidation than exogenous lipids. Endogenous lipids reduced insulin-mediated glucose oxidation. Thus, both endogenous and exogenous lipid concentrations regulated each other's oxidation and total lipid oxidation in human myotubes. A reduced exogenous lipid oxidation, secondary to increased triacylglycerol levels, may redirect free fatty acids into esterification and oxidation from intracellular stores, thereby protecting myotubes from FFA lipotoxic effects.
内源性和外源性脂质水平都可能是骨骼肌中总脂质氧化的调节因子。我们研究了从健康、瘦的受试者建立的人肌管中脂质氧化的动态变化,这些受试者暴露于急性和慢性增加的棕榈酸浓度下。随着慢性棕榈酸暴露,肌细胞内三酰甘油含量增加。异位增加的细胞内和细胞外脂质水平同时被氧化,并且可以部分抑制彼此的氧化。总体而言,最高的急性棕榈酸处理刺激脂肪酸氧化,而最高的慢性处理降低总脂质氧化。细胞内脂质比外源性脂质表现出更完全的氧化。内源性脂质降低胰岛素介导的葡萄糖氧化。因此,内源性和外源性脂质浓度相互调节彼此的氧化以及人肌管中的总脂质氧化。由于三酰甘油水平升高导致的外源性脂质氧化减少,可能会将游离脂肪酸重新导向酯化和细胞内储存的氧化,从而保护肌管免受游离脂肪酸的脂毒性作用。