首页> 美国卫生研究院文献>Biochemical Journal >Metabolic fate of non-esterified fatty acids in isolated hepatocytes from newborn and young pigs. Evidence for a limited capacity for oxidation and increased capacity for esterification.
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Metabolic fate of non-esterified fatty acids in isolated hepatocytes from newborn and young pigs. Evidence for a limited capacity for oxidation and increased capacity for esterification.

机译:新生猪和年幼猪分离的肝细胞中非酯化脂肪酸的代谢命运。氧化能力有限和酯化能力增强的证据。

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摘要

In hepatocytes isolated from 48 h-old starved of suckling newborn pigs or from 15-day-old starved piglets, the rate of ketogenesis from oleate or from octanoate is very low. This is not due to an inappropriate fatty acid uptake by the isolated liver cells, but results from a limited capacity for fatty acid oxidation. Some 80-95% of oleate taken up is converted into esterified fats, whatever the age or the nutritional conditions. Three lines of indirect evidences suggest that fatty acid oxidation is not controlled primarily by malonyl-CoA concentration in newborn pig liver. Firstly, the addition of glucagon does not increase fatty acid oxidation or ketogenesis. Secondly, the rate of lipogenesis is very low in isolated hepatocytes from newborn pigs. Thirdly, the rates of oxidation and ketogenesis from octanoate are also decreased in isolated hepatocytes from newborn and young piglets. The huge rate of esterification of fatty acids in the liver of the newborn pigs probably represents a species-specific difference in intrahepatic fatty acid metabolism.
机译:从48 h饥饿的乳头新生猪或15天饥饿的仔猪分离出的肝细胞中,从油酸盐或辛酸盐中生酮的速率非常低。这不是由于分离的肝细胞不适当地吸收了脂肪酸,而是由于脂肪酸氧化能力有限所致。无论年龄或营养条件如何,吸收的油酸酯中约80-95%都转化为酯化脂肪。三行间接证据表明,新生猪肝脏中脂肪酸氧化主要不受丙二酰辅酶A浓度控制。首先,胰高血糖素的添加不会增加脂肪酸的氧化或生酮作用。其次,新生猪分离出的肝细胞中脂肪生成的速率很低。第三,在新生和年轻仔猪的分离的肝细胞中,辛酸的氧化和生酮的速率也降低了。新生猪肝脏中脂肪酸的巨大酯化速率可能代表了肝内脂肪酸代谢的物种特异性差异。

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