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Fish oil omega-3 fatty acids partially prevent lipid-induced insulin resistance in human skeletal muscle without limiting acylcarnitine accumulation

机译:鱼油中的omega-3脂肪酸可部分阻止脂质诱导的人体骨骼肌胰岛素抵抗,而不会限制酰基肉碱的积累

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Acylcarnitine accumulation in skeletal muscle and plasma has been observed in numerous models of mitochondrial lipid overload and insulin resistance. Fish oil n3PUFA (omega-3 polyunsaturated fatty acids) are thought to protect against lipid-induced insulin resistance. The present study tested the hypothesis that the addition of n3PUFA to an intravenous lipid emulsion would limit muscle acylcarnitine accumulation and reduce the inhibitory effect of lipid overload on insulin action. On three occasions, six healthy young men underwent a 6-h euglycaemic-hyperinsulinaemic clamp accompanied by intravenous infusion of saline (Control), 10% Intralipid? [n6PUFA (omega-6 polyunsaturated fatty acids)] or 10% Intralipid? +10% Omegaven? (2:1; n3PUFA). The decline in insulin-stimulated whole-body glucose infusion rate, muscle PDCa (pyruvate dehydrogenase complex activation) and glycogen storage associated with n6PUFA compared with Control was prevented with n3PUFA. Muscle acetyl-CoA accumulation was greater following n6PUFA compared with Control and n3PUFA, suggesting that mitochondrial lipid overload was responsible for the lower insulin action observed. Despite these favourable metabolic effects of n3PUFA, accumulation of total muscle acylcarnitine was not attenuated when compared with n6PUFA. These findings demonstrate that n3PUFA exert beneficial effects on insulin-stimulated skeletal muscle glucose storage and oxidation independently of total acylcarnitine accumulation, which does not always reflect mitochondrial lipid overload.
机译:在许多线粒体脂质超载和胰岛素抵抗模型中都观察到了酰基肉碱在骨骼肌和血浆中的蓄积。鱼油n3PUFA(omega-3多不饱和脂肪酸)被认为可以抵抗脂质诱导的胰岛素抵抗。本研究检验了以下假设:将n3PUFA添加到静脉内脂质乳剂中将限制肌肉酰基肉碱的积累并减少脂质超载对胰岛素作用的抑制作用。六名健康的年轻人在3种情况下接受了6小时的正常血糖-高胰岛素血症钳夹,同时静脉输注生理盐水(对照),10%脂质体内? [n6PUFA(omega-6多不饱和脂肪酸)]或10%的脂质体内? + 10%欧米茄? (2:1; n3PUFA)。与n6PUFA相比,n3PUFA可以防止胰岛素刺激的全身葡萄糖输注速率,肌肉PDCa(丙酮酸脱氢酶复合物激活)和糖原贮积的下降。与对照组和n3PUFA相比,n6PUFA后的肌肉乙酰辅酶A积累更大,表明线粒体脂质超负荷是观察到的较低胰岛素作用的原因。尽管n3PUFA具有这些有利的代谢作用,但与n6PUFA相比,总肌肉酰基肉碱的积累并未减弱。这些发现表明,n3PUFA与总的酰基肉碱积累无关,对胰岛素刺激的骨骼肌葡萄糖存储和氧化产生有益作用,而这并不总是反映线粒体脂质超载。

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